Patents by Inventor Eric Bernier

Eric Bernier has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20160234729
    Abstract: A system and method is described that enables autonomic discovery of wireless network security mechanisms by mobile devices. Stateful monitoring of wireless devices facilitates identification of pending network connectivity loss, enabling a handoff server to proactively advertise new points of access and their associated security mechanisms to devices before connectivity is lost. As a result, devices may seamlessly transition between secure networks. Stateful monitoring of device reachability may be used together with device certificates and/or tokens to decrease the potential of MAC spoofing and further secure the network. Stateful monitoring of device connectivity status during network transitions facilitates the identification of rogue access points. The token or certificate on the device may be used to authenticate the device while transitioning between networks by a centralized entity, managing the initiation and the execution of the handover for the device.
    Type: Application
    Filed: April 14, 2016
    Publication date: August 11, 2016
    Inventors: Guyves Achtari, Denis Plante, Eric Bernier
  • Patent number: 9319879
    Abstract: A system and method is described that enables autonomic discovery of wireless network security mechanisms by mobile devices. Stateful monitoring of wireless devices facilitates identification of pending network connectivity loss, enabling a handoff server to proactively advertise new points of access and their associated security mechanisms to devices before connectivity is lost. As a result, devices may seamlessly transition between secure networks. Stateful monitoring of device reachability may be used together with device certificates and/or tokens to decrease the potential of MAC spoofing and further secure the network. Stateful monitoring of device connectivity status during network transitions facilitates the identification of rogue access points. The token or certificate on the device may be used to authenticate the device while transitioning between networks by a centralized entity, managing the initiation and the execution of the handover for the device.
    Type: Grant
    Filed: January 21, 2008
    Date of Patent: April 19, 2016
    Assignee: Apple Inc.
    Inventors: Guyves Achtari, Denis Plante, Eric Bernier
  • Patent number: 9316800
    Abstract: An apparatus comprising a plurality of alignment couplers, wherein the alignment couplers are equally spaced a first length apart from each other along a first surface, a plurality of photodetectors optically coupled to the plurality of alignment couplers, a memory, and a processor coupled to the photodetectors and the memory, wherein the memory comprises computer executable instructions stored in a non-transitory computer readable medium that when executed by the processor cause the processor to receive an electrical signal in response to at least one of the photodetectors detecting a first light, and determine an edge coupling alignment based on the electrical signal, wherein the edge coupling alignment is aligned when the electrical signal indicates two photodetectors of the plurality of photodetectors detect the first light, and wherein the edge coupling alignment is misaligned when the electrical signal indicates only one photodetector of the plurality of photodetectors detects the first light.
    Type: Grant
    Filed: May 14, 2015
    Date of Patent: April 19, 2016
    Assignee: Huawei Technologies Co., Ltd.
    Inventors: Dritan Celo, Dominic John Goodwill, Eric Bernier
  • Patent number: 9258629
    Abstract: In one embodiment, a cloud radio access network (C-RAN) includes a first plurality of antennas and a first plurality of radio remote units (RRUs) coupled to the plurality of antennas. The C-RAN also includes a first plurality of broadband base units (BBUs) and a first photonic switch optically coupled between the first plurality of RRUs and the first plurality of BBUs.
    Type: Grant
    Filed: June 20, 2013
    Date of Patent: February 9, 2016
    Assignee: Huawei Technologies Co., Ltd.
    Inventors: Alan Frank Graves, Dominic Goodwill, Eric Bernier
  • Publication number: 20150309265
    Abstract: Embodiments are provided for scalable photonic packet fabric architectures using photonic integrated circuit switches. The architectures use compact size silicon photonic circuits that can be arranged in a combined centralized and distributed manner. In an embodiment, an optical switch structure comprises a plurality of core photonic based switches and a plurality of photonic interface units (PIUs) optically coupled to the core photonic based switches and to a plurality of groups of top-of-rack switches (TORs). Each PIU comprises a N×N silicon photonic (SiP) switch optically coupled to a group of TORs associated with the PIU from the groups of TORs, where N is a number of the TORs in each group. The PIU also comprises a plurality of 1×P SiP switches coupled to the group of TORs associated with the PIU and to the core photonic based switches, where P is a number of the core photonic based switches.
    Type: Application
    Filed: April 24, 2015
    Publication date: October 29, 2015
    Inventors: Hamid Mehrvar, Huixiao Ma, Eric Bernier
  • Publication number: 20150312659
    Abstract: In one embodiment, optical node includes an input port configured to receive an input optical frame and a first optical switch coupled to the input port, where the first optical switch is configured to remove the input optical frame to produce a removed input optical frame when an address of the input optical frame is a node address of the optical node and to pass the input optical frame to a second optical switch when an address of the input optical frame differs from the address of the optical node. The optical node also includes the second optical switch coupled to the first optical switch, where the second optical switch is configured to output the input optical frame to an output port when the address of the input optical frame is not the node address of the optical node and the address of the input optical frame is not an empty address.
    Type: Application
    Filed: October 16, 2014
    Publication date: October 29, 2015
    Inventors: Hamid Mehrvar, Eric Bernier
  • Publication number: 20150289035
    Abstract: In one embodiment, method of photonic packet switching includes receiving, by a photonic switching fabric from a first top-of-rack (TOR) switch, a destination port request corresponding to a first photonic packet and a first period of time, where the destination port request includes a first output port and determining whether the first output port is available during the first period of time. The method also includes receiving, by the photonic switching fabric from the first TOR switch, the first photonic packet and routing the first photonic packet to the first output port when the first output port is available during the first period of time. Additionally, the method includes routing the first photonic packet to an alternative output port when the first output port is not available.
    Type: Application
    Filed: May 12, 2014
    Publication date: October 8, 2015
    Applicant: Futurewei Technologies, Inc.
    Inventors: Hamid Mehrvar, Eric Bernier, Peter Ashwood-Smith
  • Publication number: 20150286005
    Abstract: Embodiments are provided for an improved 2×1 switch cell design with integrated photodiode for off-state monitoring. In an embodiment, am optical switch comprises a 2×1 multi-mode interferometer (MMI) coupler including two input waveguides jointly coupled to an output waveguide, and a photodetector coupled to an edge of a first waveguide of the input waveguides, and positioned next to a side of the output waveguide. In another embodiment, an optical chip comprises two input waveguides parallel to each other, and an output waveguide coupled to the two input waveguides. The optical chip further includes a photodetector coupled to a first waveguide of the two input waveguides, and positioned next to the output waveguide, and a branch waveguide extending from the first waveguide into the photodetector.
    Type: Application
    Filed: April 4, 2014
    Publication date: October 8, 2015
    Applicant: Futurewei Technologies, Inc.
    Inventors: Patrick Dumais, Eric Bernier
  • Publication number: 20150277036
    Abstract: Embodiments are provided for photonic chip waveguides with improved coupling efficiency to optical fibers. In an embodiment, a photonic chip comprises a semiconductor substrate, a dielectric layer on the substrate, and a tapered silicon or semiconductor waveguide embedded in the dielectric layer. The dielectric layer has lower optical refractive index than the tapered waveguide and serves as a cladding for the tapered waveguide. The chip further includes, on the substrate, a dielectric waveguide adjacent to the dielectric layer. The tip of the tapered waveguide is embedded in the dielectric waveguide. The dielectric waveguide serves to couple the tapered waveguide to an optical fiber, enlarge and better confine the light propagation mode from the taper waveguide to the fiber.
    Type: Application
    Filed: March 28, 2014
    Publication date: October 1, 2015
    Applicant: FUTUREWEI TECHNOLOGIES, INC.
    Inventors: Jia Jiang, Dominic John Goodwill, Eric Bernier
  • Publication number: 20150271576
    Abstract: Embodiments are provided herein for an apparatus and method for controlling an integrated photonic switching device on a photonic lightwave circuit (PLC). The apparatus includes the optical switch with a plurality of input optical signal channels and a plurality of output optical signal channels. The apparatus further includes a plurality of photodetectors that are coupled, via corresponding optical taps, to at least one of the input optical signal channels and at least one of the output optical signal channels. Additionally, a passive electrical circuit is electrically coupled to the photodetectors. The circuit is configured to generate an output electrical signal as a function of the at least one of the input optical signal channels and the at least one of the output optical signal channels. The output electrical signal has a substantially lower frequency than the input optical signal channels and the output optical signal channels.
    Type: Application
    Filed: March 18, 2014
    Publication date: September 24, 2015
    Applicant: FutureWei Technologies, Inc.
    Inventors: Mikelis Svilans, Eric Bernier
  • Patent number: 8971321
    Abstract: In one embodiment, a system for accelerating a packet stream includes a first accelerator configured to re-clock the packet stream from a first clock rate to a second clock rate to produce an accelerated packet stream, where the first clock rate is less than the second clock rate, where the packet stream has a first inter-packet gap, where the accelerated packet stream has a second inter-packet gap, and where the second inter-packet gap is greater than the first inter-packet gap. The system also includes a switch coupled to the first accelerator, where the switch is configured to switch the accelerated packet stream at the second clock rate to produce a switched packet stream.
    Type: Grant
    Filed: May 24, 2013
    Date of Patent: March 3, 2015
    Assignee: Futurewei Technologies, Inc.
    Inventors: Alan Frank Graves, Peter Ashwood-Smith, Dominic Goodwill, Eric Bernier
  • Publication number: 20150055951
    Abstract: Recursive optimization algorithms can be used to determine which idle photonic switching elements to configure in N×N switching fabrics to achieve crosstalk suppression. Different algorithms are used to achieve different levels of optimization. Embodiment full optimization techniques may configure all inactive cells to reduce crosstalk, and consequently may provide the best noise performance and highest power usage. Partial optimizations may configure fewer than all inactive cells to reduce crosstalk, and may provide sub-optimal noise performance at lower power usages. Differential partial optimization algorithms configure inactive cells in different stages of a photonic switching fabric. Fewer than all cells in a given stage may be configured by some algorithms.
    Type: Application
    Filed: October 31, 2014
    Publication date: February 26, 2015
    Inventors: Hamid Mehrvar, Yi Qian, Patrick Dumais, Dominic John Goodwill, Eric Bernier
  • Publication number: 20150043905
    Abstract: In one embodiment, data center includes a packet switching core and a photonic switch. The photonic switch includes a first plurality of ports optically coupled to the packet switching core and a second plurality of ports configured to be optically coupled to a plurality of peripherals, where the photonic switch is configured to link packets between the plurality of peripherals and the packet switching core. The data center also includes a photonic switch controller coupled to the photonic switch and an operations and management center coupled between the packet switching core and the photonic switch controller.
    Type: Application
    Filed: August 7, 2013
    Publication date: February 12, 2015
    Applicant: FutureWei Technologies, Inc.
    Inventors: Alan Frank Graves, Peter Ashwood-Smith, Eric Bernier, Dominic Goodwill
  • Publication number: 20140334819
    Abstract: In one embodiment, method of wrapping photonic packets includes receiving, by a node, a first packet and receiving, by the node, a second packet. The method also includes concatenating the first packet and the second packet to produce a concatenated frame, where concatenating the first packet and the second packet includes removing an inter-packet-gap (IPG) between the first packet and the second packet and converting the concatenated frame to a photonic frame, where the concatenated frame is an electrical frame.
    Type: Application
    Filed: May 12, 2014
    Publication date: November 13, 2014
    Applicant: Futurewei Technologies, Inc.
    Inventors: Hamid Mehrvar, Eric Bernier
  • Publication number: 20140334820
    Abstract: A network planning tool and method for configuring a connection-oriented packet network over a WDM optical network without an optical control layer, such as a SONET/SDH layer. The optical network includes a plurality of optical fibers interconnected through nodes and the connection-oriented packet network, such an Ethernet network, MPLS network, or pseudowire network, includes two or more terminal devices. The method and tool function by building an association between the components of the physical layer, such as the optical fiber, and their geographic location or path. The connection-oriented packet network is configured by building multi-link trunks (MLTs) between terminal devices, where the MLTs are built by aggregating lightpaths that traverse distinctive geographic paths. The MLTs are planned and configured through aggregating lightpaths that traverse incongruent sets of photonic elements.
    Type: Application
    Filed: July 25, 2014
    Publication date: November 13, 2014
    Inventors: Mirjana VUKOVIC, Dominic GOODWILL, Eric BERNIER
  • Publication number: 20140328154
    Abstract: Crosstalk can be suppressed in photonic switching fabrics by activating unused photonic elements in a manner that manipulates the inactive connections and inhibits the propagation of cross-talk over the switching fabric. For example, unused photonic elements can be set to a cross or bar configuration to block first and second order crosstalk from propagating to the output ports, thereby reducing noise in the output signals. All of the unused elements can be activated in order to maximize crosstalk suppression. Alternatively, fewer than all of the unused elements may be activated to achieve a balance between crosstalk suppression and power conservation. Photonic switch architectures can be configured to use pre-determined cross-talk suppression maps (e.g., patterns of activated unused cells) for the various switching configurations, which may be computed using a recursive algorithm.
    Type: Application
    Filed: September 4, 2013
    Publication date: November 6, 2014
    Inventors: Hamid Mehrvar, Yi Qian, Patrick Dumais, Dominic Goodwill, Eric Bernier
  • Publication number: 20140269351
    Abstract: In one embodiment, a system for steering an input packet stream includes a traffic splitter configured to split an input packet stream into a first packet stream and a second packet stream, and a photonic switching fabric coupled to the traffic splitter, where the photonic switching fabric is configured to switch the first packet stream. The system may also include an electrical packet switching fabric coupled to the traffic splitter, where the electrical packet switching fabric is configured to switch the second packet stream, and a traffic combiner coupled to the photonic switching fabric and to the electrical packet switching fabric, where the traffic combiner is configured to merge the first switched packet stream and the second switched packet stream to produce a first packet flow.
    Type: Application
    Filed: May 24, 2013
    Publication date: September 18, 2014
    Applicant: FutureWei Technologies, Inc.
    Inventors: Alan Frank Graves, Peter Ashwood-Smith, Eric Bernier, Dominic Goodwill
  • Patent number: 8824887
    Abstract: A network planning tool and method for configuring a connection-oriented packet network over a WDM optical network without an optical control layer, such as a SONET/SDH layer. The optical network includes a plurality of optical fibers interconnected through nodes and the connection-oriented packet network, such an Ethernet network, MPLS network, or pseudowire network, includes two or more terminal devices. The method and tool function by building an association between the components of the physical layer, such as the optical fiber, and their geographic location or path. The connection-oriented packet network is configured by building multi-link trunks (MLTs) between terminal devices, where the MLTs are built by aggregating lightpaths that traverse distinctive geographic paths. The MLTs are planned and configured through aggregating lightpaths that traverse incongruent sets of photonic elements.
    Type: Grant
    Filed: March 18, 2011
    Date of Patent: September 2, 2014
    Assignee: Rockstar Consortium US LP
    Inventors: Mirjana Vukovic, Dominic Goodwill, Eric Bernier
  • Publication number: 20140161450
    Abstract: In one embodiment, a system for accelerating a packet stream includes a first accelerator configured to re-clock the packet stream from a first clock rate to a second clock rate to produce an accelerated packet stream, where the first clock rate is less than the second clock rate, where the packet stream has a first inter-packet gap, where the accelerated packet stream has a second inter-packet gap, and where the second inter-packet gap is greater than the first inter-packet gap. The system also includes a switch coupled to the first accelerator, where the switch is configured to switch the accelerated packet stream at the second clock rate to produce a switched packet stream.
    Type: Application
    Filed: May 24, 2013
    Publication date: June 12, 2014
    Applicant: FutureWei Technologies, Inc.
    Inventors: Alan Frank Graves, Peter Ashwood-Smith, Dominic Goodwill, Eric Bernier
  • Publication number: 20140161447
    Abstract: In one embodiment, a cloud radio access network (C-RAN) includes a first plurality of antennas and a first plurality of radio remote units (RRUs) coupled to the plurality of antennas. The C-RAN also includes a first plurality of broadband base units (BBUs) and a first photonic switch optically coupled between the first plurality of RRUs and the first plurality of BBUs.
    Type: Application
    Filed: June 20, 2013
    Publication date: June 12, 2014
    Inventors: Alan Frank Graves, Dominic Goodwill, Eric Bernier