Bidirectional Patents (Class 398/72)
  • Patent number: 8682162
    Abstract: A return path system includes inserting RF packets between regular upstream data packets, where the data packets are generated by communication devices such as a computer or interne telephone. The RF packets can be derived from analog RF signals that are produced by legacy video service terminals. In this way, the present invention can provide an RF return path for legacy terminals that shares a return path for regular data packets in an optical network architecture.
    Type: Grant
    Filed: June 19, 2011
    Date of Patent: March 25, 2014
    Assignee: Aurora Networks, Inc.
    Inventors: James O. Farmer, Deven J. Anthony, Stephen A. Thomas, Patrick W. Quinn
  • Patent number: 8682166
    Abstract: Disclosed is a subcarrier multiplexing type optical communication method including the steps of receiving a first optical signal composed of a plurality of subcarrier channels having different frequencies, creating a second optical signal having a wavelength different from a wavelength of a received signal; and detecting the subcarrier channels from a third optical signal obtained by subjecting the first optical signal to wavelength shift by means of the second optical signal.
    Type: Grant
    Filed: January 5, 2007
    Date of Patent: March 25, 2014
    Assignee: Samsung Electronics Co., Ltd.
    Inventors: Dae-Kwang Jung, Seong-Taek Hwang, Jin-Woo Park, Sang-Lok Lee, Sung-Kuen Lee
  • Patent number: 8682164
    Abstract: An optical wavelength division node includes an optical splitter, a plurality of optical circulators, and a colorless light source module. The optical splitter receives and splits a downstream signal light source into a first-path and a second-path signal light source. The optical circulator in a first-order position receives and transmits the first-path signal light source to an optical network unit in a first-order position, and receives a return signal and passes it to a next optical circulator, and finally the optical circulator in a last-order position receives the return signal and transmits it. The colorless light source module receives the second-path signal light source and the return signal transmitted by the optical circulator in a last-order position, and uses the second-path signal light source to modulate the return signal to generate an upstream signal light source to be transmitted to the optical line terminal by the optical splitter.
    Type: Grant
    Filed: March 22, 2012
    Date of Patent: March 25, 2014
    Assignee: Industrial Technology Research Institute
    Inventors: Po-Lung Tien, Maria C. Yuang, Hsing-Yu Chen, Jyehong Chen
  • Patent number: 8682163
    Abstract: A detecting method, an apparatus, and a system in an Optical Distribution Network (ODN) are provided. The method includes: an Optical Line Termination (OLT) reserves a test window, and an Optical Network Unit (ONU) stops sending an uplink signal in the test window, the OLT emits a downlink test signal having a wavelength the same as that of the uplink signal in the test window, the OLT receives backward signals of the downlink test signal, in which the backward signals include a backward scattered signal and a backward reflected signal, processes the backward signals, and obtains state information of the ODN according to the backward signals. The method does not need to add other hardware, and the downlink signal is sent normally in the downlink. The implementation is low in the cost and easy in the technology.
    Type: Grant
    Filed: July 22, 2011
    Date of Patent: March 25, 2014
    Assignee: Huawei Technologies Co., Ltd.
    Inventor: Sulin Yang
  • Publication number: 20140072305
    Abstract: Gigabit Ethernet connectivity is realized using off-the-shelf GIGABIT INTERFACE CONVERTER transceivers, wave division multiplexer/demultiplexers, and a single optical fiber. Simultaneous and bi-directional optical communication over a single optical fiber connecting two or more nodes is achieved by using at least one GIGABIT INTERFACE CONVERTER transceiver having at least one optical signal output and an optical signal input that are of different wavelengths from each other.
    Type: Application
    Filed: November 15, 2013
    Publication date: March 13, 2014
    Applicant: Technology Advancement Group, Inc.
    Inventors: John A. McEwan, James S. McEwan
  • Patent number: 8670667
    Abstract: The present disclosure generally pertains to an arrayed media converter (AMC) that has an array of Wavelength Division Multiplexing-Passive Optical Network (WDM-PON) Optical Network Units (ONUs) for terminating an optical channel in the feeder or distribution portion of a telecommunication network. The ONU converts an optical signal from the optical channel into at least one electrical signal for transmission to a customer premises. Thus, the AMC serves as an interface between at least one WDM-PON link and at least one conductive connection, such as a twisted pair. In one exemplary embodiment, the AMC comprises a sealed housing that is environmentally hardened to protect the AMC from environmental conditions, including changes in weather. Such an AMC may be used to provide a robust, cost effective Fiber To The Curb (FTTC) solution, but the AMC may be used at other points within the network, if desired.
    Type: Grant
    Filed: November 16, 2009
    Date of Patent: March 11, 2014
    Assignee: ADTRAN, Inc.
    Inventors: Leif J. Sandstrom, Kevin W. Schneider
  • Patent number: 8660428
    Abstract: The present disclosure provides a transmission system, apparatus and method to provide for variable channel spacing in multiplexed or combined optical signals for transmission over a network infrastructure. The channel spacing may be monitored and maintained at desired values in order to maximize the channel density under various conditions related to the network infrastructure. The individual carrier frequencies associated with each signal channel of the transmission system may be individually controlled to define the desired channel. The channel spacing may be altered to provide for higher channel densities increasing system capacity, or to provide for lower channel densities improving the overall reach of the transmission system. The channel spacing may be continuously monitored and maintained at desired values allowing for rapid and automated reconfiguration of the transmission system, which may result in maximized capacity and reduced costs.
    Type: Grant
    Filed: December 31, 2010
    Date of Patent: February 25, 2014
    Assignee: Infinera Corporation
    Inventor: Michael Francis Van Leeuwen
  • Patent number: 8655174
    Abstract: A wavelength division multiplexer is provided by the present invention, which implements the wavelength division multiplexing and de-multiplexing of the optical signals in the basic and upgrade bands by reasonably arranging the filters and selecting the spectral properties of the filters, so that the existing time division multiplexing passive optical network (TDM-PON) can transmit the next generation passive optical network (NG-PON) simultaneously and the existing TDM-PON can be smoothly upgraded to the NG-PON, meanwhile, it provides the deployed TDM-PON with the subsequent network compatibility. The wavelength division multiplexer provided in the present invention can meet the high isolation requirement of the optical signals in working band with low cost, and takes both the isolation requirement and the optical network insertion loss requirement into account, thus it has high reliability, is easy to use and for system upgrade.
    Type: Grant
    Filed: September 24, 2009
    Date of Patent: February 18, 2014
    Assignee: ZTE Corporation
    Inventors: Songlin Zhu, Dan Geng, Jie Su
  • Patent number: 8655175
    Abstract: A method and apparatus for implementing a hybrid SOA-Raman amplifier in a central office in order to enable multiple passive optical networks to share one or more enhancement service sources, e.g., to share a source for a broadcast service are disclosed.
    Type: Grant
    Filed: July 16, 2012
    Date of Patent: February 18, 2014
    Assignee: AT&T Intellectual Property II, L.P.
    Inventors: Patrick Paul Iannone, Han Hyub Lee, Kenneth Charles Reichmann, Xiang Zhou
  • Patent number: 8649681
    Abstract: An optical network unit for a passive optical network (10), configured to: initiate an upstream wavelength (wus) for an upstream signal (US) from the optical network unit to an optical line terminal (10); iteratively, until an iteration criterion is met, i) transmit the upstream signal (US) to the optical line terminal (10), ii) receive from the optical line terminal (10) power level data (p) for the upstream signal (US) as measured by the optical line terminal (10), and iii) set the upstream wavelength (wus) for the upstream signal (US) to a new wavelength-value; and adjust the upstream wavelength (wus) to a wavelength-value previously set for the upstream signal (US) and associated with power level data corresponding to a certain power level. A passive optical network system, the optical line terminal and related methods are also disclosed.
    Type: Grant
    Filed: November 30, 2009
    Date of Patent: February 11, 2014
    Assignee: Telefonaktiebolaget LM Ericsson (Publ)
    Inventor: Peter Öhlén
  • Patent number: 8649682
    Abstract: A distribution node of a passive optical network (PON) comprises a first port for receiving a first optical continuous envelope modulated downstream data signal at a first wavelength (?C) from a first optical line termination unit (OLT1) and a second port for receiving a second optical continuous envelope modulated downstream data signal at a second wavelength (?L) from a second optical line termination unit (OLT2). A first converter (FBG-1) performs continuous envelope modulation-to-intensity modulation conversion of the first optical downstream data signal and forwards the converted first optical downstream data signal (?C) to the first group of optical network units (ONU1 . . . N). A second converter (FBG-2) performs continuous envelope modulation-to-intensity modulation conversion of the second optical downstream data signal and forwards the converted second optical downstream data signal (?L) to the second group of optical network units (ONUN+1 . . . 2N).
    Type: Grant
    Filed: September 18, 2009
    Date of Patent: February 11, 2014
    Assignee: Telefonaktiebolaget L M Ericsson (Publ)
    Inventors: Marco Presi, Fabio Cavaliere, Ernesto Ciaramella
  • Patent number: 8644708
    Abstract: An apparatus comprising a first optical transmitter configured to couple to a second optical transmitter, a first optical receiver, and a seed light source, wherein the first optical transmitter and the first optical receiver are part of a first passive optical network (PON) and the second optical transmitter and a second optical receiver are part of a second PON, and wherein at least one of the first optical transmitter and the second optical transmitter is an injection locked laser transmitter. Also disclosed is a method comprising feeding a seed light to a plurality of injection locked laser transmitters in a plurality of PONs using only one broadband light source (BLS), wherein each PON comprises an optical line terminal (OLT) transmitter and a plurality of optical network units (ONUs) transmitters.
    Type: Grant
    Filed: October 8, 2010
    Date of Patent: February 4, 2014
    Assignee: Futurewei Technologies
    Inventor: Ning Cheng
  • Patent number: 8644707
    Abstract: The invention relates to a bidirectional optical amplifier array (VA) which is preferably used in a passive optical network (PON) system, is disposed between a first line termination (OLT) and a second line termination (ONU), and is penetrated by an optical downstream signal (OSD) in one direction and an optical upstream signal (OSD) in the opposite direction. Said optical amplifier array is composed of a first part with two branching and combining units (D1 and D2), a unidirectional optical amplifier (E1), and a transponder (T) in which the optical downstream signals and upstream signals (OSU and OSD) are separately amplified. The two signals (OSU and OSD) that run in opposite directions are amplified in a bidirectional amplifier (E2) in a second part. A constant gain is maintained in the bidirectional optical amplifier (E2) by means of the continuous downstream signal (OSD) such that the amplifier can be operated in stable conditions for the upstream signal (OSU) regardless of occurring bursts.
    Type: Grant
    Filed: February 19, 2007
    Date of Patent: February 4, 2014
    Assignee: Nokia Siemens Networks GmbH & Co. KG
    Inventors: Stefan Gianordoli, Lutz Rapp, Michael Rasztovits-Wiech, Andreas Stadler
  • Patent number: 8639119
    Abstract: A remote node for a wavelength-division-multiplexed passive optical network (WDM PON). The remote node comprises means for receiving uplink optical signals from one or more optical network units of the WDM PON; a broadband reflector for reflecting a self-seeding portion of the respective uplink optical signals to the respective uplink light sources; and wherein the reflector comprises a gain medium and is configured for receiving a pump optical signal from a central office of the WDM PON for amplifying the self seeding portion of the respective uplink optical signal.
    Type: Grant
    Filed: March 31, 2009
    Date of Patent: January 28, 2014
    Assignee: Agency for Science, Technology and Research
    Inventors: Yang Jing Wen, Zhaowen Xu, Xiaofei Cheng, Yixin Wang
  • Patent number: 8634717
    Abstract: A Distributed Denial of Service (DDoS) attack detection and defense apparatus and method are provided. The Distributed Denial of Service (DDoS) attack detection and defense apparatus includes: a flow information collection unit to collect, from one or more input packets with an IP address of an attack target system as a destination IP address, flow information including source IP addresses of the input packets and packet counts of one or more flows that are classified for each of the source IP addresses and each of different protocol types; an inspection unit to calculate packets per second (PPS) values of the flows based on the packet counts; and a response unit to determine a DDoS attack response method for each of the flows based on the PPS value and the protocol type of a corresponding flow and to process the corresponding flow using the determined DDoS attack response method.
    Type: Grant
    Filed: December 8, 2011
    Date of Patent: January 21, 2014
    Assignee: Electronics and Telecommunicatiions Research Institute
    Inventors: Kyoung-Soon Kang, Hak-Suh Kim, Byung-Jun Ahn
  • Patent number: 8634716
    Abstract: A data transmission network comprising: a base comprising: a base light source and a base light detector; a plurality of nodes, each node comprising a node light source and a node light detector; and a plurality of optical fibers arranged to form a optical fiber network. Each optical fiber is arranged to receive light from the base light source, transmit the light received from the base light source to one or more of the node light detectors via an air gap, receive light from one or more of the node light sources via an air gap, and transmit the light received from the node light source(s) towards the base light detector.
    Type: Grant
    Filed: November 7, 2011
    Date of Patent: January 21, 2014
    Assignee: Airbus Operations Limited
    Inventors: Franklin Tichborne, Joseph K-W Lam, Simon Masters, David Parmenter
  • Patent number: 8634719
    Abstract: Systems and methods for enabling different network nodes of a network access system to share a backhaul communication link are disclosed. In one embodiment, the method includes: connecting a first modem to a first node of the network access system; connecting a second modem to a second node of the network access system; connecting the first modem to a first port of a splitter filter; connecting the second modem to a second port of the splitter filter; and connecting a backhaul communication link to a third port of the splitter filter, which is configured to multiplex signals transmitted by the modems onto the backhaul communication link, wherein the frequency spectrum of the signal transmitted by the first modem does not overlap substantially with the frequency spectrum of the signal transmitted by the second modem.
    Type: Grant
    Filed: January 21, 2009
    Date of Patent: January 21, 2014
    Assignee: Telefonaktiebolaget L M Ericsson (publ)
    Inventor: Per-Erik Eriksson
  • Publication number: 20140016938
    Abstract: A tunable channel transmitter system for a wavelength division multiplexed (WDM) passive optical network (PON) includes a WDM communication system having a plurality of WDM channel bandwidths, an injection-locked Fabry-Perot laser having a plurality of resonant modes, a seed light source to provide seed light to the injection-locked Fabry-Perot laser, and a temperature control element configured to shift the plurality of resonant modes of the injection-locked Fabry-Perot laser to ensure that only one resonant mode of the injection-locked Fabry-Perot laser is locked to the seed source and transmitting a substantial portion of the laser power through a desired channel of the WDM communications system.
    Type: Application
    Filed: July 11, 2012
    Publication date: January 16, 2014
    Applicant: ADTRAN, INC.
    Inventors: Leif J. Sandstrom, Kevin Wayne Schneider
  • Patent number: 8625990
    Abstract: An optical line terminal (OLT), a remote node (RN) unit, and an optical transmission method and a system thereof are provided. The method includes following steps. Power splitting is performed respectively on a part or all of M optical signals which have different wavelengths and are generated by M light sources, thus forming a first group of optical signals including first split optical signals and a second group of optical signals including second split optical signals. Both the first group of optical signals and the second group of optical signals have N different wavelengths. Cross routing is performed on the first group of optical signals and the second group of optical signals to form N carrier groups of signals that need to be provided to N optical network units (ONUs).
    Type: Grant
    Filed: April 23, 2010
    Date of Patent: January 7, 2014
    Assignee: Huawei Technologies Co., Ltd.
    Inventor: Fan Yu
  • Patent number: 8620159
    Abstract: The invention relates to improvements in or relating to modulation in an Optical Network, and to an apparatus, a method and a communications network for modulation in an Optical Network. An apparatus is arranged to receive a modulated optical signal comprising a carrier wavelength and first data. The apparatus is arranged to substantially erase the first data from the optical signal by performing an inversion operation on the modulated optical signal. The apparatus is arranged to receive second data and to modulate the carrier wavelength with the second data for onward transmission of the second data. The inversion operation comprises applying a signal comprising an inverse of the first data to at least a portion of the modulated optical signal. The signal may further comprise the second data such that the modulation of the carrier wavelength and erasure of the first data is performed in a single operation.
    Type: Grant
    Filed: October 7, 2008
    Date of Patent: December 31, 2013
    Assignee: Telefonaktiebolaget LM Ericsson (publ)
    Inventors: Marco Presi, Ernesto Ciaramella, Fabio Cavaliere
  • Patent number: 8611745
    Abstract: A passive optical network communication system includes a number of subscribers' units connected to a central line termination unit through a passive optical coupler. The line termination unit includes a first section that transmits and receives a code division multiplex (CDM) signal, a second section that transmits and receives a time division multiplex (TDM) signal, and a wavelength multiplexing filter that combines the transmitted CDM and TDM signals into a single downstream optical signal, and separates the CDM and TDM components of an upstream signal received from the subscribers' units through the passive optical coupler. The CDM signal provides channels for digital video transmission to CDM-capable subscribers' units.
    Type: Grant
    Filed: December 22, 2008
    Date of Patent: December 17, 2013
    Assignee: Oki Electric Industry Co., Ltd.
    Inventor: Masayuki Kashima
  • Patent number: 8606109
    Abstract: A technique for forwarding downstream packets in a GPON comprising an OLT unit having a physical PON port connected to N Optical Network Termination (ONT) units by optical fibers. The physical PON port accommodates N individual virtual GEM ports terminated with the N ONT units (ONTs) which form N:1 service. The technique comprises assigning in the physical port of the OLT unit a virtual GEM port being a shared broadcast GEM port terminated with all the N ONTs of the N:1 service. Those downstream packets applied to the physical PON port, which would otherwise be flooded—such as broadcast packets or packets having unknown destination address—will now be forwarded only via the shared broadcast GEM port.
    Type: Grant
    Filed: September 22, 2008
    Date of Patent: December 10, 2013
    Assignee: ECI Telecom Ltd
    Inventor: Ido Ouzieli
  • Patent number: 8606100
    Abstract: A wavelength division multiplexing (WDM)-time division multiplexing (TDM) passive optical network (PON) remote terminal (RT) is provided. The wavelength division multiplexing (WDM)-time division multiplexing (TDM) passive optical network (PON) remote terminal (RT), includes: a WDM-TDM converter configured to convert a WDM downstream optical signal that is received from a central office terminal (COT) into a TDM downstream optical signal or to convert a TDM upstream optical signal that is received from an optical network terminal (ONT) into a WDM upstream optical signal; an error detector configured to detect an error; and a controller configured to, in response to an error being detected, transmit the WDM upstream optical signal to the COT via a first standby link or transmit the TDM downstream optical signal to the ONT via a second standby link.
    Type: Grant
    Filed: December 22, 2011
    Date of Patent: December 10, 2013
    Assignee: Electronics and Telecommunications Research Institute
    Inventors: Kwang-Ok Kim, Eun-Gu Lee, Eui-Suk Jung, Sang-Soo Lee, Tae-Whan Yoo
  • Patent number: 8600235
    Abstract: A first node receives a first phase modulated optical signal at a first wavelength from a master node. The first node also transmits a first amplitude modulated optical signal to the master node at the first wavelength using a portion of the first phase modulated optical signal as a light source.
    Type: Grant
    Filed: June 21, 2012
    Date of Patent: December 3, 2013
    Assignee: Verizon Business Global LLC
    Inventors: Tiejun J. Xia, Glenn A. Wellbrock
  • Patent number: 8600234
    Abstract: One embodiment of the present invention provides an optical line terminal (OLT) in an Ethernet passive optical network (EPON). The OLT includes a number of bi-direction optical transceivers. At least one bi-direction optical transceiver is coupled to an optical network unit (ONU) group that includes a number of ONUs. The OLT further includes a first downstream media access control (MAC) interface configured to provide a first downstream control signal and a splitter configured to split the first downstream control signal to a number of sub-signals. At least one sub-signal is configured to control downstream transmission of a corresponding bi-direction optical transceiver to a corresponding ONU-group.
    Type: Grant
    Filed: March 29, 2010
    Date of Patent: December 3, 2013
    Assignee: Broadcom Corporation
    Inventors: Ryan E. Hirth, Edward W. Boyd
  • Patent number: 8594506
    Abstract: A method and system can propagate upstream cable modem signals and radio-frequency (RF) return video control signals over the same passive optical network (PON). The method and system can include various combinations of hardware and software to support this operation. Three exemplary embodiments of optical network terminals (ONT) of a DPON system improve performance of the system by ensuring that, in the event the upstream transmitters of two ONTs are turned on simultaneously, they will not interfere with each other. The system is designed such that in a situation of competing transmissions, the one which is received and processed by the head end out of two competing transmissions originating from a set top box and a cable modem, will be the one originating from the cable modem, which may use the DOCSIS cable modem protocol.
    Type: Grant
    Filed: February 10, 2013
    Date of Patent: November 26, 2013
    Assignee: Aurora Networks, Inc.
    Inventors: James O. Farmer, Paul F. Whittlesey
  • Patent number: 8582966
    Abstract: Systems and methods for performing protection switching in a passive optical network are provided. When a fiber cut is detected, control and management plane applications are not immediately informed. A rapid re-registration procedure is instigated upon detection of a fiber cut event. This allows multiple optical network units to re-register quickly without restarting control and management applications.
    Type: Grant
    Filed: September 10, 2007
    Date of Patent: November 12, 2013
    Assignee: Cortina Systems, Inc.
    Inventor: Charles Chen
  • Patent number: 8582970
    Abstract: There is provided an office-side line concentration device that accommodates a plurality of passive optical networks, including a plurality of receiving means connected to each of the plurality of passive optical networks, and interface means for controlling a transmission timing of user data from the plurality of passive optical networks so that user data received by the plurality of receiving means can be arranged closely in an uplink, thus enabling effective use of bandwidth in the uplink.
    Type: Grant
    Filed: November 18, 2008
    Date of Patent: November 12, 2013
    Assignee: Sumitomo Electric Industries, Ltd
    Inventor: Kazuhisa Yamashita
  • Patent number: 8577220
    Abstract: A method and system for protecting against communication loss or disruption in an optical network system includes a signal state detector, which can measure received optical signals and determine if their strength is sufficient to support reliable communications. If the signal state detector informs the control circuit that the received optical signal is too low to support communications with the data service hub (or if there is no signal at all, such as in a severance of an optical waveguide), then the control circuit can instruct the data switch to re-route communications from the primary communication path to a secondary or back up communication path. This switching or re-routing of communications from a primary communication path which is non-functional or inoperative to an operational and fully functional communication path (a back up or secondary communication path) can be completed in a very short time, such as within fifty milliseconds or less.
    Type: Grant
    Filed: March 2, 2009
    Date of Patent: November 5, 2013
    Assignee: Aurora Networks, Inc.
    Inventors: Weyl K. Wang, James O. Farmer
  • Patent number: 8571420
    Abstract: An apparatus for driving a wavelength-independent light source is provided. The apparatus includes a seed light signal generation unit configured to generate seed light signals with one or more wavelengths based on a wavelength identification signal, a wavelength light detection unit configured to detect the wavelength identification signal from the seed light signals, an extraction unit configured to extract wavelength information corresponding to the detected wavelength identification signal and extract a driving condition of a wavelength-independent light source corresponding to the extracted wavelength information, and a driving unit configured to drive the wavelength-independent light source according to the extracted driving condition.
    Type: Grant
    Filed: December 22, 2011
    Date of Patent: October 29, 2013
    Assignee: Electronics and Telecommunications Research Institute
    Inventors: Seung-Hyun Cho, Han-Hyub Lee, Jie-Hyun Lee, Jong-Hoon Lee, Eun-Gu Lee, Eui-Suk Jung, Sang-Soo Lee
  • Patent number: 8571422
    Abstract: A burst transmission method and a receiver resetting method and apparatus in a Passive Optical Network (PON) are provided. A burst receiver resetting method in a PON includes: receiving a preamble sequence and synchronizing data; after synchronizing the data, continuing to receive the data, and matching a Burst Terminator (BT); and resetting a receiver after successfully matching the BT. Meanwhile, an apparatus for implementing the method and a corresponding burst data transmission method are provided. By using the burst receiver resetting method and apparatus in the PON and the corresponding burst transmission method at an Optical Network Unit (ONU) burst transmission end, a Reach Extender (RE) does not need to unpack upstream burst bandwidth allocation information carried in downstream data. Therefore, the complexity of the implementation of the RE is reduced, and the method is simple and effective.
    Type: Grant
    Filed: August 16, 2011
    Date of Patent: October 29, 2013
    Assignee: Huawei Technologies Co., Ltd.
    Inventors: Jing Li, Dongning Feng, Dongyu Geng, Frank Effenberger
  • Patent number: 8566896
    Abstract: An addressable optical network interface unit includes an optical input and a radio frequency output. The unit also includes an optical-to-electrical conversion circuit that converts optical signals received at the optical input into radio frequency signals, a directional coupler that is coupled to an output of the optical-to-electrical conversion circuit and a radio frequency receiver that is coupled to a first output of the directional coupler. The radio frequency receiver receives radio frequency signals input through the optical input. The unit also includes a controller that is coupled to the radio frequency receiver, and a filter circuit that is coupled to a second output of the directional coupler. The filter circuit includes multiple signal paths that filter out signals in different frequency ranges. Switches are provided that select one of the signal paths through the filter circuit. These switches are controlled in response to data contained in the radio frequency signal.
    Type: Grant
    Filed: October 22, 2010
    Date of Patent: October 22, 2013
    Assignee: CommScope, Inc. of North Carolina
    Inventors: Robert Ryan Riggsby, Neil Phillips, Mark Vogel
  • Patent number: 8565601
    Abstract: The control device includes a power-saving control unit that intermittently repeats, based on a power saving permission signal transmitted from the master station apparatus, power saving control in which the slave station stops or reduces power supply to a transmitter or a receiver for a predetermined pause duration while maintaining a communication link and a monitoring unit that monitors out of synchronization by comparing a synchronization signal received from the OLT and a time of the ONU. The control device shifts from a registered state to a deregistered state when the monitoring unit detects the out of synchronization. On the other hand, after the pause duration of the power saving control, the control device suppresses the shift to the deregistered state due to the detection of the out of synchronization.
    Type: Grant
    Filed: December 8, 2010
    Date of Patent: October 22, 2013
    Assignee: Mitsubishi Electric Corporation
    Inventors: Kenichi Nakura, Hiroaki Mukai, Seiji Kozaki, Daisuke Ito, Masaki Tanaka
  • Patent number: 8565599
    Abstract: In accordance with the teachings of the present invention, a system and method for transmitting optical markers in a passive optical network (PON) system is provided. In a particular embodiment, a method for transmitting optical markers in a PON system includes transmitting a first optical marker signal, the first optical marker signal used to identify at least one of the first optical marker signal, an upstream wavelength corresponding to the first optical marker signal, and an optical network unit (ONU) type transmitting at the upstream wavelength corresponding to the first optical marker signal. The method also includes transmitting a second optical marker signal, the second optical marker signal used to identify at least one of the second optical marker signal, an upstream wavelength corresponding to the second optical marker signal, and an ONU type transmitting at the upstream wavelength corresponding to the second optical marker signal.
    Type: Grant
    Filed: January 31, 2007
    Date of Patent: October 22, 2013
    Assignee: Fujitsu Limited
    Inventor: Martin Bouda
  • Patent number: 8559818
    Abstract: A system for delivering multiple passive optical network services is disclosed. The system includes a first optical transmission service comprising a common wavelength pair routed from a source to each of a plurality of subscribers. The system further includes a second optical transmission service comprising a plurality of unique wavelength pairs, where each of the unique wavelength pairs is routed from the source to a subscriber among the plurality of subscribers. The system delivers the first optical transmission service and the second optical transmission service to the subscriber on a single optical fiber.
    Type: Grant
    Filed: October 23, 2008
    Date of Patent: October 15, 2013
    Assignee: ADC Telecommunications, Inc.
    Inventors: Steven C. Zimmel, Timothy G. Badar, Trevor D. Smith
  • Patent number: 8559817
    Abstract: A communication system includes a communication unit with a first part and a number of a second part, where the second part is arranged to be placed at the location of an end user, and where the first part is common for a number of second parts. The first part and the second part respectively include a laser, and each second part is connected with the first part by a fiber optic cable and a frequency filter, the first part and the relevant second part being arranged to exchange information by laser light. Each second part includes a tunable laser, the first part is arranged to analyze light received from a second part, and to transmit information to the second part while the first part is receiving light from the second part, and the information contains information for the second part that it should adjust, where required, its frequency or wavelength, and the second part thus is arranged to change its frequency or wavelength.
    Type: Grant
    Filed: October 13, 2009
    Date of Patent: October 15, 2013
    Assignee: Syntune AB
    Inventors: Gert Sarlet, Pierre-Jean Rigole
  • Patent number: 8559819
    Abstract: The information transfer method includes: determining an indicator of a start bit in a protection time slot or a preamble time slot of a laser, and establishing a communication channel according to the indicator of the start bit; inserting Operation Administration and Maintenance (OAM) information of a Long Reach-Passive Optical Network (LR-PON) device into an upstream frame sent to an Optical Line Terminal (OLT) device by the LR-PON device at a position indicated by the indicator of the start bit, and transporting the upstream frame to the OLT device through the communication channel. Therefore, OAM functions of the LR-PON device are extended, so that the OAM information can be transported by the LR-PON device independently, and OAM characteristics of the LR-PON device are enhanced. For example, PON protection is better supported, and the speed and success ratio of protection switching of a PON system are increased.
    Type: Grant
    Filed: April 28, 2011
    Date of Patent: October 15, 2013
    Assignee: Huawei Technologies Co., Ltd.
    Inventors: Kun Li, Jun Cai, Jianlin Zhou, Shimin Zou
  • Patent number: 8554078
    Abstract: An optical network includes a first passive optical network optical line terminal, coupled to a first port of a first optical filter arrangement, and a second passive optical network optical line terminal, coupled to a second port of the first optical filter arrangement. An optical coupler is connected between the second passive optical network line terminal and the second port of the first optical filter arrangement. A passive optical distribution node is coupled to a third port of the first optical filter arrangement.
    Type: Grant
    Filed: August 12, 2008
    Date of Patent: October 8, 2013
    Assignee: Telefonaktiebolaget LM Ericsson (publ)
    Inventors: Fabio Cavaliere, Stefan Dahlfort, Pierpaolo Ghiggino
  • Patent number: 8554079
    Abstract: A wavelength division and time division hybrid multiplexing passive optical network system, terminals and a signal transmission method are disclosed in the present invention. The system comprises: a plurality of optical modules at the optical line terminal side connecting to an office all-optical wavelength conversion unit, the all-optical wavelength conversion unit connecting with a subscriber all-optical wavelength conversion unit via a fiber, and the subscriber all-optical wavelength conversion unit connecting with a plurality of optical couplers, and each optical couplers connecting with a plurality of optical network units respectively; the present invention facilitates full use of the existing source of access network and ensures a smooth transition from the time division multiplexing passive optical network to the optical access network of the next generation without changing the structure of the current time division passive optical network.
    Type: Grant
    Filed: September 5, 2008
    Date of Patent: October 8, 2013
    Assignee: ZTE Corporation
    Inventors: Deming Liu, Songlin Zhu, Minming Zhang, Hai Liu, Li Zhang, Changjian Ke, Sui Xiao
  • Patent number: 8554080
    Abstract: An optical splitter for a passive optical network for telecommunication signal transmission with an optical line terminal includes a wavelength selective optical electrical converter, an AC/DC splitter, an energy reservoir and optical switches, where the splitter comprises also a data transmission processing module by which the optical switches can be controlled according to data signals transmitted from the optical line terminal.
    Type: Grant
    Filed: September 18, 2008
    Date of Patent: October 8, 2013
    Assignee: Nokia Siemens Networks OY
    Inventors: Marek Hajduczenia, Pedro Inacio, Paulo Miguel Monteiro, Silvia Pato, Henrique Silva
  • Publication number: 20130259469
    Abstract: A manner of providing for testing of access fibers in a PON (passive optical network) using OTDR (optical time-domain reflectometry). According to the invention, a PON includes an optical splitter module having one or more optical couplers that combines downstream light from 1×N optical splitter directing the output of an OLT (optical line terminal) and a cyclic AWG (arrayed waveguide grating) for transmission toward one or more ONUs (optical network units). The splitter module is preferably formed on a single semiconductor chip, such as a PIC (photonic integrated circuit) chip and may reside in an outside plant of the PON.
    Type: Application
    Filed: March 30, 2012
    Publication date: October 3, 2013
    Applicant: Alcatel-Lucent USA Inc.
    Inventors: Joseph L. Smith, Ronald Heron
  • Patent number: 8548334
    Abstract: Reduced Rayleigh backscattering effect enables a longer-reach optical access communication network-thus it eliminates significant costs. Furthermore, a wavelength to an intelligent subscriber subsystem can be dynamically varied for bandwidth on-Demand and service on-Demand. A software module renders intelligence (and context awareness) to a subscriber subsystem and an appliance. An object can sense/measure/collect/aggregate/compare/map and connect/couple/interact (via one or more or all electrical/optical/radio/electro-magnetic/sensor/bio-sensor communication network(s) within and/or to and/or from an object) with another object, an intelligent subscriber subsystem and an intelligent appliance utilizing an Internet protocol version 6 (IPv6) and its subsequent versions. A construction of a near-field communication (NFC) enabled intelligent micro-subsystem and/or intelligent appliance with key applications (e.g.
    Type: Grant
    Filed: January 31, 2011
    Date of Patent: October 1, 2013
    Inventor: Mohammad Mazed
  • Patent number: 8548328
    Abstract: A Gigabit-capable Passive Optical Network (GPON), including an enhanced Optical Line Termination (OLT) and Optical Network Units (ONUs), provides enhanced features, e.g., features defined in XG-PON. One or more of the ONUs are enhanced ONUs. The enhanced OLT communicates with the ONUs via downstream frames and upstream bursts, each downstream frame and upstream burst being compliant with a GPON framing format. The enhanced OLT transmits downstream frames to the ONUs, the downstream frames including downstream sub-frames with at least one downstream sub-frame being an overhead sub-frame that includes information of the enhanced features. The enhanced OLT receives upstream bursts from the ONUs, the upstream bursts including upstream sub-frames, each upstream sub-frame including an upstream identifier field that indicates to the enhanced OLT whether the upstream sub-frame is an overhead sub-frame.
    Type: Grant
    Filed: September 19, 2011
    Date of Patent: October 1, 2013
    Assignee: Telefonaktiebolaget L M Ericsson (publ)
    Inventor: David Hood
  • Patent number: 8548327
    Abstract: A system in an Optical Line Terminal (OLT) to dynamically manage polling rates in a passive optical network is provided herein. The system includes a Media Access Control (MAC) unit that is configured to receive a first message from an Optical Network Unit (ONU). The first message includes a status of an upstream queue of the ONU. The system includes a traffic monitor unit coupled to the MAC unit and is configured to receive the first message from the MAC unit and place the upstream queue of the ONU in an inactive mode if the status of the upstream queue indicates that the upstream queue is empty.
    Type: Grant
    Filed: December 14, 2010
    Date of Patent: October 1, 2013
    Assignee: Broadcom Corporation
    Inventors: Ryan E. Hirth, Glen Kramer
  • Patent number: 8542998
    Abstract: The longest possible sleep time is selected while data missing is prevented in a PON system by referring to the link speeds and the queue buffer capacities of an OLT and ONUs. The OLT calculates a first sleep time candidate based on a first link speed at which the OLT communicates with an upper network and the capacity of an unused area of a first queue buffer where downstream data is held for each of the destination ONUs. Each of the ONUs calculates a second sleep time candidate based on a second link speed at which each of the ONUs communicates with a communication terminal and the capacity of an unused area of a second queue buffer where upstream data bound for the OLT is held. The smaller sleep time is determined and used to change one of the ONUs to a sleep mode.
    Type: Grant
    Filed: October 17, 2011
    Date of Patent: September 24, 2013
    Assignee: Hitachi, Ltd.
    Inventors: Makoto Kamijo, Noboru Oosawa, Satoshi Konno
  • Patent number: 8538259
    Abstract: In an optical access network system in which a relay station receives a wavelength multiplexed and time-division multiplexed optical signal (WDM optical signal) from an optical network, and the relay station transmits optical signals having specified wavelengths to subscriber units, the relay station demultiplexes the WDM optical signal into a plurality of groups with one group having a plurality of optical signals having a fixed wavelength interval between signals, then divides the optical signals of each group into k branches (k is the number of subscriber units) and inputs the signals to optical switches, and by turning ON/OFF the optical switches such that they are spaced in time, inputs the branched optical signals to the respective specified subscribers units.
    Type: Grant
    Filed: June 15, 2012
    Date of Patent: September 17, 2013
    Assignee: Fujitsu Limited
    Inventor: Yutaka Kai
  • Publication number: 20130236180
    Abstract: A distributed antenna system includes a plurality of remote units configured to service different regions of a service area, and a head-end unit configured to process and transmit downlink signals from base stations to the remote units over optical cables, and to process and transmit uplink signals from the remote units to the base stations, wherein the remote units are configured to adjust or filter a level of downlink signals from the head-end unit and to transmit the adjusted or filtered downlink signals to mobile stations, and to process and transmit uplink signals from mobile stations to the head-end unit over the optical cables.
    Type: Application
    Filed: August 17, 2012
    Publication date: September 12, 2013
    Inventors: Bung Chul Kim, Younghoon Ko
  • Patent number: 8532485
    Abstract: A system and method for a transparent WDM metro ring architecture in which optics enables simultaneous provisioning of dedicated wavelengths for high-end user terminals, while low-end user terminals share wavelengths on “virtual rings”. All wavelengths are sourced by the network and remotely modulated at customer “End Stations” by low cost semiconductor optical amplifiers, which also serve as transmission amplifiers. The transparent WDM metro ring architecture permits the communication of information and comprises a fiber optical feeder ring, at least one fiber optical distribution ring, a network node (NN), at least one access node (AN) said network node and said at least one access node connected via said fiber optical feeder ring and at least one end station (ES) connected via said fiber optical distribution ring to said at least one access node, wherein said user is attached to said at least one end station.
    Type: Grant
    Filed: October 19, 2011
    Date of Patent: September 10, 2013
    Assignee: AT&T Intellectual Property II, L.P.
    Inventors: Nicholas J. Frigo, Patrick P. Iannone, Kenneth C. Reichmann, Aleksandra Smiljanic
  • Patent number: 8532491
    Abstract: A passive optical network system such that the power consumption can be reduced as much as possible according to the end-user traffic. An OLT uses the DBA function thereof and sequentially uses frequencies in ascending order of transmission rate in order to sequentially allocate bands to ONUs in ascending order of the requested bandwidth. At this time, a frequency to be allocated is selected so that the bandwidth allocated to each ONU is narrower than a maximum bandwidth through which transmission using the allocated wavelength is enabled. An OLT uses a grant area to specify the transmission timing of the secondary station and to inform the specified transmission timing to the secondary station. In addition, an area is set for storing information used to inform the secondary station of a new frequency to be used.
    Type: Grant
    Filed: April 7, 2009
    Date of Patent: September 10, 2013
    Assignee: Hitachi, Ltd.
    Inventors: Norihiro Sakamoto, Tohru Kazawa, Yusuke Yajima, Akihiko Tsuchiya
  • Patent number: 8532489
    Abstract: An apparatus comprising a wavelength division multiplexing (WDM) coupler configured to couple an optical line terminal (OLT) comprising a transmitter and a receiver, wherein the WDM coupler is coupled to the transmitter via a first fiber and to the receiver via a second fiber. An apparatus comprising a WDM coupler for a passive optical network (PON) comprising a plurality of filters and a plurality of ports, wherein the WDM coupler comprises fewer filters than ports. A method comprising receiving a downstream optical signal intended for an optical network terminal (ONT) via a first fiber, and transmitting an upstream optical signal received from the ONT via a second fiber.
    Type: Grant
    Filed: February 22, 2010
    Date of Patent: September 10, 2013
    Assignee: Futurewei Technologies, Inc.
    Inventors: Ning Cheng, Zhishan Feng, Frank J. Effenberger