Abstract: A system and method for monitoring dropped packets are provided. A method for communications device operations includes receiving a sequence of packets from a transmitting station, where each packet in the sequence of packets includes a protocol layer packet for each protocol layer of multi-layered network. The method also includes determining if a packet in the sequence of packets has been dropped by the transmitting station, where the determining is based on at least two sets of sequence numbers associated with different protocol layers of packets in the sequence of packets. The method further includes updating a packet discard counter based on the determining.
Abstract: A package-on-package (PoP) device is provided. The device includes a first package with a first chip mounted on a first substrate, a heat spreader stacked on the first package, the heat spreader in thermal contact with the first chip, and a second package stacked on the heat spreader. In an embodiment, the heat spreader is formed using carbon fibers to provide good lateral thermal conductivity. In an embodiment, ends of the heat spreader project beyond a periphery of the first and second packages.
Abstract: In one embodiment, a method for a wireless communication includes generating a first time-frequency reference signal pattern at a first base station. The first time-frequency reference signal pattern includes a modified version of a mother pattern of time-frequency of a fixed size. The method further includes transmitting a first reference signal using the first time-frequency reference signal pattern.
Abstract: A system and method for probability-based resource allocation in a wireless communications system is provided. A method for centralized resource allocation includes coordinating spectrum sensing information with a set of cognitive radio (CR) user pairs, computing probability-based information for CR user pairs in the set of CR user pairs, computing adjustment values for each channel available for allocation, assigning a CR user pair to an unassigned channel in a set of channels available for allocation, the assigning based on the probability-based information, updating the adjustment values, repeating the assigning a CR user pair and the updating the adjustment values if the adjustment values have not converged, and transmitting a message to the set of CR user pairs, wherein the message comprises information regarding CR user pair to channel assignments.
Type:
Grant
Filed:
March 22, 2010
Date of Patent:
November 27, 2012
Assignee:
FutureWei Technologies, Inc.
Inventors:
Dongdong Li, Dandan Wang, Mazin Al-Shalash, Anthony C. K. Soong
Abstract: A system and method for enabling coordinated beam switching and scheduling in a wireless communications system. A method for controller operation includes indicating that the controller is operating in a cooperative beam switching mode, transmitting a beam formed reference signal (BFRS), from each communications device being served by the controller, receiving a measurement of a communications channel between the controller and the communications device and an indicator indicating a transmission unit corresponding to the measurement of the communications channel, receiving a transmission intended for a communications device, and causing the transmission to be transmitted to the communications device. The BFRS is beam formed using a plurality of beam patterns, the beam pattern used in beam forming the BFRS changes once per transmission unit, and the transmission is transmitted using measurement of the communications channel and the indicator from the communications device.
Type:
Grant
Filed:
September 21, 2009
Date of Patent:
November 20, 2012
Assignee:
FutureWei Technologies, Inc.
Inventors:
Cornelius van Rensburg, Patrick Ahamad Hosein, Anthony C. K. Soong
Abstract: A system and method for rate matching to enhance system throughput based on packet size is provided. A method for transmitting information includes encoding a block of N bits, where N is an integer, demultiplexing the encoded block of N bits into at least one subblock of systematic bits and at least one subblock of parity bits, and permuting the at least one subblock of systematic bits and the at least one subblock of parity bits to generate at least one permuted subblock. The method also includes forming at least one output block from the at least one permuted subblock, computing a starting position of a redundancy version for a hybrid automatic repeat request (HARQ) transmission based on a relationship between N and a threshold, and transmitting the redundancy version. The redundancy version begins at the computed starting position and ends when a specified number of bits has been transmitted.
Type:
Grant
Filed:
September 4, 2009
Date of Patent:
November 20, 2012
Assignee:
FutureWei Technologies, Inc.
Inventors:
Jung Woon Lee, Shiau-He Tsai, Anthony C. K. Soong
Abstract: System and method for scheduling spectrum sensing in cognitive radio systems. A method comprises sensing an availability of a spectrum band, computing a duration of an inter-sensing time block based on the availability of the spectrum band, and scheduling an occurrence of the spectrum sensing operation using the duration of the inter-sensing time block. Computing the duration of the inter-sensing time block based on the availability of the spectrum band allows for an optimization of communications of the cognitive radio system, thereby increasing spectral efficiency and reducing interference to licensed communications.
Type:
Grant
Filed:
October 24, 2008
Date of Patent:
November 20, 2012
Assignee:
FutureWei Technologies, Inc.
Inventors:
Xiangwei Zhou, Young Hoon Kwon, Anthony C. K. Soong
Abstract: A network comprising a switch configured to switch traffic between a plurality of external interfaces via a plurality of virtual interfaces associated with the external interfaces, and wherein the traffic comprises a plurality of external virtual local area network (VLAN) identifiers (VIDs) associated with the external interfaces to select the virtual interfaces. Also disclosed is a network component comprising at least one processor configured to implement a method comprising receiving a frame from a physical port, obtaining an external VID from a VLAN tag in the frame, removing the VLAN tag from the frame, selecting a virtual interface based on the external VID, and delivering the frame to the selected virtual interface.
Type:
Grant
Filed:
October 4, 2011
Date of Patent:
November 20, 2012
Assignee:
Futurewei Technologies, Inc.
Inventors:
T. Benjamin Mack-Crane, Linda Dunbar, Robert Sultan, Lucy Yong
Abstract: A system and method for peer-to-peer communications in cellular communications systems are provided. A method for communications device operations includes receiving a peer list at a communications device, where the peer list includes a list of reachable communications devices and device-to-device (D2D) capability information of the reachable communications devices, selecting a peer from the peer list, sending a content request comprising an indication of a content to a communications controller serving the communications device, and receiving the content from the peer over a channel established by the communications controller.
Abstract: In accordance with an embodiment, a method of operating a base station configured to operate with user devices includes scheduling transmission for the user devices. Scheduling transmission includes determining a first fading metric for at least one user device from the at least one user device to the base station, determining at a second fading metric for the at least one user device from the at least one user device to at least one other base station, and determining a priority metric for the at least one user device based on the first and second fading metrics. The priority metric is configured to assign a higher priority to a user device with a first fading metric indicating an up-fade and the second fading metric indicating a down-fade. The method further includes transmitting a transmission schedule to the at least one user device based the priority metric.
Abstract: This present disclosure provides an optical transmission method and system. The system includes a pre-coder for pre-coding an input signal into a first pre-coded signal, an encoder/separator coupled to the first pre-coded signal and arranged to encode the first and second pre-coded signals into a first encoded signal with 0 degree phase shift and a second encoded signal with 180 degree phase shift, and an optical modulator for providing optical modulation to the first and second encoded signals with a light source such that the intensity of an output optical duo-binary (ODB) signal with frequency chirp has identical logic sequence as the input signal.
Abstract: An embodiment method of transcoding a macroblock coded in one of a Skip mode and a Direct mode includes recording a first reference frame index and a first motion vector corresponding to the macroblock during a decoding process and deriving a second reference frame index and a second motion vector corresponding to the macroblock during an encoding process. The method further includes comparing the first reference frame index to the second reference frame index and the first motion vector to the second motion vector during the encoding process. If the comparing achieves a predetermined criteria, the Skip mode and the Direct mode are reused to encode the macroblock during the encoding process.
Abstract: In accordance with an embodiment, a method of processing an electronic image having caption text includes receiving the electronic source image, detecting the caption text in the electronic source image, reformatting the electronic source image, reformatting the caption text, and overlaying the reformatted caption text on the reformatted electronic image to form a resultant image.
Abstract: A system and method for multi-cell access are provided. A method includes transmitting at least one control channel to a communications device. The at least one control channel includes control information, and the transmitting is performed by at least one cell in a subset of a cooperating set. The method also includes transmitting to the communications device based on control information transmitted to the communications device, or receiving from the communications device based on control information transmitted to the communications device. The transmitting is performed by at least one other cell in the cooperating set, or the receiving is performed by the at least one other cell in the cooperating set.
Abstract: A system and method is proposed for progressively quantizing channel state information for application in a MIMO (multiple input multiple output) communication system. A method includes computing an estimate of a communications channel between a subscriber unit and a base station, quantizing the estimate with a first codebook, thereby producing a first quantized estimate, quantizing an (n?1)-th quantized estimate with an n-th codebook, thereby producing an n-th quantized estimate, where n is an integer value ranging from 2 to R, R is a total number of quantizations of the estimate, wherein the n-th codebook is a localized codebook. The method also includes incrementing n, repeating the quantizing an (n?1)-th quantized estimate until n=R, and transmitting information based on the R quantized estimates to the base station.
Abstract: A system and method for quality of experience estimation are provided. A method for communications device operations includes selecting a portion of a media content stream, processing the portion to produce a processed portion, generating a signature from the processed portion, transmitting the signature, and transmitting the media content stream.
Abstract: An apparatus comprising an aggregation/core switch configure to couple to an edge switch and receive information about a plurality of end system facing ports of the edge switch, wherein the information about the end system facing ports is used to associate the end system facing ports with a plurality of corresponding queues at the aggregation/core switch. Also disclosed is a network component comprising a receiver configured to receive information about a plurality of end system facing ports of an edge switch, a processor configured to establish and associate the end system facing ports with a plurality of corresponding queues, and a transmitter configured to return information about the associated end system facing ports.
Abstract: A system and method for wireless communications is provided. A method for operating in a communications network includes receiving a codebook, the codebook includes a plurality of codewords, and determining if the codebook satisfies a constant modulus property. The method also includes in response to determining that the codebook does not satisfy the constant modulus property, converting the codebook into a codebook satisfying the constant modulus property, and storing the codebook satisfying the constant modulus property. The method further includes storing the codebook in response to determining that the codebook does satisfy the constant modulus property, and causing to transmit a transmission to a communications device, wherein the transmission is encoded using a codeword in the stored codebook.
Abstract: A system and method for user equipment (UE) measurement timing in a relay cell are provided. A method for controller operations includes broadcasting a first pattern of time intervals to communications devices served by a controller, and for a communication device served by the controller, determining a second pattern for the communications device, where the second pattern is based on the first pattern, and transmitting the second pattern to the communications device.
Abstract: An apparatus comprising a video transcoding engine (VTE), a video source storage (VSS) coupled to the VTE, a network engine (NE) coupled to the VTE and in communications with a plurality of user devices, and a media management system (MMS) coupled to the VTE, the VSS, and the NE, and in communications with the user devices, wherein the VSS comprises an original video source (OVS) and an adaptive video source (AVS) that corresponds to the same video content, and wherein the AVS comprises a content format that is more frequently delivered to the user devices than a plurality of other delivered content formats of the video content other than the OVS.