IP Library Granted Patent US 7,027,409
Granted Patent B2
US 7,027,409 · App. 10/400,997 · Granted Apr 11, 2006

Method and device for establishing communication links and for estimating overall quality of a directional link and reporting to OLSR in a communication system

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Quick Facts
Patent No.
US 7,027,409
App. No.
10/400,997
Granted
Apr 11, 2006
Kind
B2
Abstract

A wireless communication network includes a plurality of mobile nodes each including a transceiver, a phased array antenna connected to the transceiver, and a controller connected to the transceiver. The controller discovers routes and routes communications to neighboring nodes with a routing protocol, e.g. an Optimized Link State Routing (OLSR) protocol. The controller schedules time slots to establish a communication link with each neighboring mobile node, and the phased array antenna is aimed by the controller towards each neighboring mobile node during communication therewith. Also, the controller estimates link quality based upon the quality of each time slot scheduled for the communication link and reports estimated link quality to the routing protocol.

Claims (47)

1. A wireless communication network comprising:

a plurality of mobile nodes each comprising a transceiver, a directional antenna connected to said transceiver, and a controller connected to said transceiver and comprising

a communications router to discover routes and route communications to neighboring nodes with a routing protocol,

a time slot scheduling unit to schedule time slots to establish a communication link with each neighboring mobile node,

an antenna aiming unit to aim said directional antenna toward each neighboring mobile node during communication therewith, and

a link quality estimator to estimate link quality based upon the quality of each time slot scheduled for the communication link and to report estimated link quality to the communications router.

2. A wireless communication network according to claim 1 , wherein the estimated link quality is defined as the maximum quality of each time slot scheduled for the communication link.

3. A wireless communication network according to claim 2 , wherein the router routes communications to neighboring nodes based upon the estimated link quality.

4. A wireless communication network according to claim 3 , wherein the communication link is maintained by the router as long as the maximum quality of at least one time slot for the link is above a predetermined threshold.

5. A wireless communication network according to claim 4 , wherein the router initiates new route discovery when the estimated link quality for the link is below the predetermined threshold.

6. A wireless communication network according to claim 1 , wherein the router performs a hysteresis function to the estimated link quality reported from the link quality estimator.

7. A wireless communication network according to claim 1 , wherein a plurality of communication links are established within a scheduled time slot, with each communication link including a different pair of neighboring mobile nodes.

8. A wireless communication network according to claim 1 , wherein said directional antenna comprises a phased array antenna.

9. A wireless communication network comprising: a plurality of mobile nodes each comprising a transceiver, a directional antenna connected to said transceiver, and a controller connected to said transceiver to discover routes and route communications to neighboring nodes with an Optimized Link State Routing (OLSR) protocol, to schedule time slots to establish a communication link with each neighboring mobile node, to aim said directional antenna toward each neighboring mobile node during communication therewith, and to estimate link quality based upon the quality of each time slot scheduled for the communication link and to report estimated link quality for use by the OLSR protocol.

10. A wireless communication network according to claim 9 , wherein the estimated link quality is defined as the maximum quality of each time slot scheduled for the communication link.

11. A wireless communication network according to claim 10 , wherein the controller routes communications to neighboring nodes based upon the estimated link quality.

12. A wireless communication network according to claim 11 , wherein the communication link is maintained by the controller as long as the maximum quality of at least one time slot for the link is above a predetermined threshold.

13. A wireless communication network according to claim 12 , wherein the controller initiates new route discovery when the estimated link quality for the link is below the predetermined threshold.

14. A wireless communication network according to claim 9 , wherein the controller performs a hysteresis function to the estimated link quality reported from the link quality estimator.

15. A wireless communication network according to claim 9 , wherein a plurality of communication links are established within a scheduled time slot, with each communication link including a different pair of neighboring mobile nodes.

16. A wireless communication network according to claim 9 , wherein said directional antenna comprises a phased array antenna.

17. A mobile node for a wireless communication network, the mobile node comprising:

a transceiver;

a directional antenna connected to said transceiver; and

a controller connected to said transceiver and comprising

a communications router to discover routes and route communications to neighboring nodes with an Optimized Link State Routing (OLSR) algorithm,

a time slot scheduling unit to schedule time slots to establish a communication link with neighboring mobile nodes,

an antenna aiming unit to aim said directional antenna toward each neighboring mobile node during communication therewith, and

a link quality estimator to estimate link quality based upon the quality of each time slot scheduled for the communication link and to report estimated link quality to the communications router.

18. A mobile node according to claim 17 , wherein the estimated link quality is defined as the maximum quality of each time slot scheduled for the communication link.

19. A mobile node according to claim 18 , wherein the router routes communications to neighboring nodes based upon the estimated link quality.

20. A mobile node according to claim 19 , wherein the communication link is maintained by the router as long as the maximum quality of at least one time slot for the link is above a predetermined threshold.

21. A mobile node according to claim 20 , wherein the router initiates new route discovery when the estimated link quality for the link is below the predetermined threshold.

22. A mobile node according to claim 17 , wherein the router performs a hysteresis function to the estimated link quality reported from the link quality estimator.

23. A mobile node according to claim 17 , wherein a plurality of communication links are established within a scheduled time slot, with each communication link including a different pair of neighboring mobile nodes.

24. A mobile node according to claim 17 , wherein said directional antenna comprises a phased array antenna.

25. A method for establishing communication links for a plurality of mobile nodes, each mobile node comprising a transceiver, a directional antenna connected to the transceiver, and a controller connected to the transceiver, the method comprising for each mobile node:

scheduling time slots to establish a communication link with each neighboring mobile node;

aiming the directional antenna toward each neighboring mobile node during communication therewith;

estimating link quality based upon the quality of each time slot scheduled for the communication link; and reporting estimated link quality for use by an Optimized Link State Routing (OLSR) protocol.

26. A method according to claim 25 , wherein the estimated link quality is defined as the maximum quality of each time slot scheduled for the communication link.

27. A method according to claim 26 , wherein OLSR routes communications to neighboring nodes based upon the estimated link quality.

28. A method according to claim 27 , wherein the communication link is maintained by OLSR as long as the maximum quality of at least one time slot for the link is above a predetermined threshold.

29. A method according to claim 28 , wherein OLSR initiates new route discovery when the estimated link quality for the link is below the predetermined threshold.

30. A method according to claim 25 , wherein OLSR performs a hysteresis function to the reported estimated link quality.

31. A method according to claim 25 , wherein a plurality of communication links are established within a scheduled time slot, with each communication link including a different pair of neighboring mobile nodes.

32. A method according to claim 25 , wherein said directional antenna comprises a phased array antenna.

Assignments (6)
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE NAME PREVIOUSLY RECORDED ON REEL 053654 FRAME 0254. ASSIGNOR(S) HEREBY CONFIRMS THE RELEASE OF SECURITY INTEREST GRANTED PURSUANT TO THE PATENT SECURITY AGREEMENT PREVIOUSLY RECORDED. Recorded Nov 11, 2021
From: STARBOARD VALUE INTERMEDIATE FUND LP, AS COLLATERAL AGENT
To: STINGRAY IP SOLUTIONS LLC
Reel/Frame 058266/0599 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNOR NAME PREVIOUSLY RECORDED ON REEL 052853 FRAME 0153. ASSIGNOR(S) HEREBY CONFIRMS THE SECURITY INTEREST GRANTED PURSUANT TO THE PATENT SECURITY AGREEMENT PREVIOUSLY RECORDED. Recorded Nov 11, 2021
From: STINGRAY IP SOLUTIONS LLC
To: STARBOARD VALUE INTERMEDIATE FUND LP, AS COLLATERAL AGENT
Reel/Frame 058825/0107 →
RELEASE OF SECURITY INTEREST IN PATENTS Recorded Jul 8, 2020
From: STARBOARD VALUE INTERMEDIATE FUND LP
To: ACACIA RESEARCH GROUP LLC; AMERICAN VEHICULAR SCIENCES LLC; BONUTTI SKELETAL INNOVATIONS LLC; CELLULAR COMMUNICATIONS EQUIPMENT LLC; INNOVATIVE DISPLAY TECHNOLOGIES LLC; LIFEPORT SCIENCES LLC; LIMESTONE MEMORY SYSTEMS LLC; MOBILE ENHANCEMENT SOLUTIONS LLC; MONARCH NETWORKING SOLUTIONS LLC; NEXUS DISPLAY TECHNOLOGIES LLC; PARTHENON UNIFIED MEMORY ARCHITECTURE LLC; R2 SOLUTIONS LLC; SAINT LAWRENCE COMMUNICATIONS LLC; STINGRAY IP SOLUTIONS LLC; SUPER INTERCONNECT TECHNOLOGIES LLC; TELECONFERENCE SYSTEMS LLC; UNIFICATION TECHNOLOGIES LLC
Reel/Frame 053654/0254 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 23, 2020
From: EAGLE TECHNOLOGIES, INC.; L3HARRIS TECHNOLOGIES, INC.; HARRIS GLOBAL COMMUNICATIONS, INC.
To: ACACIA RESEARCH GROUP LLC
Reel/Frame 053019/0876 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 23, 2020
From: ACACIA RESEARCH GROUP LLC
To: STINGRAY IP SOLUTIONS LLC
Reel/Frame 053326/0636 →
PATENT SECURITY AGREEMENT Recorded Jun 5, 2020
From: ACACIA RESEARCH GROUP LLC; AMERICAN VEHICULAR SCIENCES LLC; BONUTTI SKELETAL INNOVATIONS LLC; CELLULAR COMMUNICATIONS EQUIPMENT LLC; INNOVATIVE DISPLAY TECHNOLOGIES LLC; LIFEPORT SCIENCES LLC; LIMESTONE MEMORY SYSTEMS LLC; MERTON ACQUISITION HOLDCO LLC; MOBILE ENHANCEMENT SOLUTIONS LLC; MONARCH NETWORKING SOLUTIONS LLC; NEXUS DISPLAY TECHNOLOGIES LLC; PARTHENON UNIFIED MEMORY ARCHITECTURE LLC; R2 SOLUTIONS LLC; SAINT LAWRENCE COMMUNICATIONS LLC; STINGRAY IP SOLUTIONS LLC; SUPER INTERCONNECT TECHNOLOGIES LLC; TELECONFERENCE SYSTEMS LLC; UNIFICATION TECHNOLOGIES LLC
To: STARBOARD VALUE INTERMEDIATE FUND LP, AS COLLATERAL AGENT
Reel/Frame 052853/0153 →