Methods Circuits Devices Systems and Associated Machine Executable Instructions for Transporting Packetized Data Across a Cellular Communications Network
Abstract
Disclosed is a communication network having at least one network access segment including one or more network access points, wherein a selective packet bridge appliance integral or otherwise functionally associated with the at least one network access segment, is adapted to selectively shunt packet flow between two or more mobile communication devices communicatively coupled to the at least one network access segment through access points of the at least one network segment, and wherein a packet is selected for shunting at least partially based on an intended destination of the packet and at least partially based on a payload type of the packets.
Claims
exact text as granted — not AI-modified1 . A communication network comprising:
at least one network access segment including one or more network access points; and a selective packet bridge appliance integral or otherwise functionally associated with said at least one network access segment and adapted to selectively shunt packet flow between two or more mobile communication devices communicatively coupled to said at least one network access segment through access points of said at least one network segment, wherein a packet is selected for shunting at least partially based on an intended destination of the packet and at least partially based on a payload type of the packets.
2 . The communication network according to claim 1 , wherein said selective packet bridge appliance includes a packet inspector to inspect packets on an uplink of said at least one network access segment generated by communication devices communicatively coupled to said at least one network access segment through one of the one or more access points.
3 . The communication network according to claim 2 , wherein said packet inspector is further adapted to inspect packets on a downlink of said at least one network access segment and designated for a communication device communicatively coupled to the at least one network access segment through one of the one or more access points.
4 . The communication network according to claim 2 , wherein said packet inspector is further adapted to determine a packet parameter including one or more of: (a) a packet payload type; (b) a packet source designator, (c) a packet destination designator, and (d) a packet quality of service requirement.
5 . The communication network according to claim 4 , wherein said selective packet bridging appliance further includes packet selection logic circuits for selecting one or more packets from an uplink of the at least one network access segment to shunt to a downlink of the at least one network access segment.
6 . The communication network according to claim 5 , wherein said packet selection logic circuits are adapted to determine that an uplink packet flow is intended for a communication device communicatively coupled to said at least one network access segment by: (a) comparing a packet destination designator against a table correlating destination designators to network access segments; or (b) detecting that a packet flow on the uplink corresponds to a packet flow on the downlink.
7 . The communication network according to claim 6 , wherein said packet selection logic circuits are adapted to select real-time transport protocol packet flows for shunting to a downlink.
8 . The communication network according to claim 7 , wherein said selective packet bridging appliance further includes a packet injector adapted to inject a shunted packet into a downlink of said at least one network access segment.
9 . The communication network according to claim 1 , wherein shunting packet flow includes allowing the shunted packet or a copy of the shunted packet to reach a core of the network and then dropping the packet before it reaches an intended destination.
10 . A method of operating a communication network comprising:
selectively shunting packet flow between two or more mobile communication devices communicatively coupled to the same at least one network access segment through access points of the at least one network segment, wherein selection for packet shunting is at least partially based on an intended destination of the packet and at least partially based on a payload type of the packets.
11 . The method according to claim 10 , wherein shunting includes inspecting packets on an uplink of the at least one network access segment generated by communication devices communicatively coupled to the at least one network access segment through one of the one or more access points.
12 . The method according to claim 11 , wherein shunting includes inspecting packets on a downlink of the at least one network access segment.
13 . The method according to claim 12 , wherein inspecting determines a packet parameter including one or more of: (a) a packet payload type; (b) a packet source designator, (c) a packet destination designator, and (d) a packet quality of service requirement.
14 . The method according to claim 13 , wherein shunting include copying RTP packets from an uplink of the at least one network access segment to a downlink of the at least one network access segment.
15 . The method according to claim 13 , wherein packet selection logic includes determining that an uplink packet flow is intended for a communication device communicatively coupled to the at least one network access segment by: (a) comparing a packet destination designator against a table correlating destination designators to network access segments; or (b) detecting that a packet flow on the uplink corresponds to a packet flow on the downlink.Join the waitlist — get patent alerts
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