IP Library › Granted Patent US 10,034,179
Granted Patent B2
US 10,034,179 · App. 14/526,799 · Granted Jul 24, 2018

System and method for extending range and coverage of bandwidth intensive wireless data streams

Inventor: Sai C. Manapragada (Hayward, CA)
H04W16/26
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Quick Facts
Patent No.
US 10,034,179
App. No.
14/526,799
Granted
Jul 24, 2018
Kind
B2
Abstract

A wireless networking system is disclosed. The system includes a first wireless access point having a first coverage area. The first wireless access point includes a first wireless transceiver to access a wireless network and a second wireless transceiver coupled to the first wireless transceiver. A second wireless access point has a second coverage area. The second wireless access point includes a third wireless transceiver for establishing a wireless link with the second wireless transceiver, and a fourth wireless transceiver coupled to the third wireless transceiver to provide user access to the wireless link. User access to the wireless link accesses the wireless network via the second and first wireless transceivers.

Claims (36)

1. A WiFi wireless local area networking system comprising:

a WiFi wireless access point having a first coverage area, the WiFi wireless access point including a first set of wireless transceivers including a first wireless transceiver to directly access a wireless network and a second wireless transceiver coupled to the first wireless transceiver, the first WiFi wireless access point including first processing logic to control the first set of wireless transceivers;

a second WiFi wireless access point having a second coverage area, the second WiFi wireless access point including a second set of wireless transceivers including a third wireless transceiver for establishing a wireless link with the second wireless transceiver, and a first group of at least two access transceivers coupled to the third wireless transceiver to provide a first user access to the wireless link, the second WiFi wireless access point including second processing logic to control the third wireless transceiver and the first group of at least two access transceivers, wherein the at least two access transceivers each provide a given bandwidth and are aggregated by the second processing logic to define a single virtual link with an available bandwidth greater than the given bandwidth;

wherein the first user in the second coverage area indirectly accesses the first wireless network associated with the first WiFi wireless access point via the wireless link and the second and first wireless transceivers;

wherein the first and second processing logic cooperate to define distributed logic and, for each WiFi wireless access point, to configure actual wireless transceiver resources via respective virtual MAC and virtual PHY layers disposed between an application layer and actual MAC and PHY layers.

2. The WiFi wireless local area networking system according to claim 1 , wherein the configuring is carried out in response to data provided back via a feedback loop.

3. The WiFi wireless local area networking system according to claim 1 , further including a third WiFi wireless access point having a third coverage area, the third WiFi wireless access point having a fourth wireless transceiver for establishing a second wireless link with at least one transceiver from the first or second set of wireless transceivers, and a second group of at least two wireless transceivers for providing user access to the wireless network via the second wireless link.

4. The WiFi wireless local area networking system according to claim 3 , wherein the first, second and third WiFi wireless access points are linearly coupled to extend wireless access to the wireless network from the first WiFi wireless access point to the third WiFi wireless access point.

5. The WiFi wireless local area networking system according to claim 4 , wherein the first coverage area does not overlap the third coverage area.

6. The WiFi wireless local area networking system according to claim 3 , wherein the second and third WiFi wireless access points are radially coupled to the first WiFi wireless access point to extend wireless access coverage to the wireless network within the first WiFi wireless access point, the second WiFi wireless access point, and the third WiFi wireless access point.

7. The WiFi wireless local area networking system according to claim 6 , wherein at least a portion of the first coverage area overlaps the third coverage area.

8. The WiFi wireless local area networking system according to claim 6 , wherein the second and third WiFi wireless access points lie in an arc radially disposed around the first WiFi wireless access point.

9. The WiFi wireless local area networking system according to claim 1 , wherein a second user is within the first and second coverage areas, and accesses the wireless network wirelessly through at least one transceiver resource associated with the first WiFi wireless access point and at least one transceiver resource associated with the second WiFi wireless access point.

10. A method of providing WiFi wireless local area network access to a user, the method comprising:

accessing a wireless network with a first wireless transceiver associated with a first WiFi wireless access point, the first WiFi wireless access point including a first set of wireless transceivers, having a first coverage area bounded by a range of a first broadcast transceiver associated with the first WiFi wireless access point;

enabling direct wireless access to the wireless network within the first coverage area with the first broadcast transceiver;

establishing a wireless link between the first WiFi wireless access point and a third wireless transceiver associated with a second WiFi wireless access point including a second set of wireless transceivers, the second WiFi wireless access point having a second coverage area bounded by a fourth wireless transceiver, the fourth wireless transceiver in communication with the third wireless transceiver, and a first group of at least two access transceivers coupled to the third wireless transceiver;

configuring actual wireless transceiver resources via respective virtual MAC and virtual PHY layers disposed between an application layer and actual MAC and PHY layers, the configuring carried out through distributed logic associated with the first WiFi wireless access point and the second WiFi wireless access point;

wherein for each WiFi wireless access point, the access point includes the first group of at least two access transceivers, wherein the at least two access transceivers each provide a given bandwidth and are aggregated to define a single virtual link with an available bandwidth greater than the given bandwidth; and

enabling indirect access to the wireless network for a first user within the second coverage area via the fourth wireless transceiver.

11. The method of claim 10 , further comprising:

enabling access to the wireless network via a fifth wireless transceiver associated with a third WiFi wireless access point.

12. The method of claim 11 , wherein the enabling access to the wireless network via the fifth wireless transceiver comprises:

serially coupling the third WiFi wireless access point to the second WiFi wireless access point to establish a second wireless link between the fifth wireless transceiver and the fourth wireless transceiver.

13. The method of claim 11 , wherein the enabling access to the wireless network via the fifth wireless transceiver comprises:

radially coupling the third WiFi wireless access point to the first WiFi wireless access point to establish a second wireless link between the fifth wireless transceiver and the second wireless transceiver.

14. The method of claim 10 , further comprising allocating wireless link assignments between the first, second, third and fourth transceivers with a wireless management system.

15. The method of claim 14 , wherein the allocating is performed during at least one of an initialization process, periodically during normal operation, or randomly on demand.

16. A WiFi wireless access point for use in a wireless networking system, the WiFi wireless access point comprising:

a first wireless transceiver associated with a first WiFi wireless access point, the first WiFi wireless access point including a first set of wireless transceivers, to establish a WiFi wireless link to a wireless local area network;

a second wireless transceiver to provide wireless access to the wireless link within a first coverage area;

a third wireless transceiver, and a first group of at least two access transceivers coupled to the third wireless transceiver, to establish a wireless link to a second WiFi wireless access point including a second set of wireless transceivers;

distributed processing logic to control each of the first, second and third wireless transceivers;

wherein the distributed processing logic configures actual radio resources via respective virtual MAC and virtual PHY layers disposed between an application layer and actual MAC and PHY layers; and

wherein for each WiFi wireless access point, the access point includes the first group of at least two access transceivers, wherein the at least two access transceivers each provide a given bandwidth and are aggregated to define a single virtual link with an available bandwidth greater than the given bandwidth.

17. The WiFi wireless access point of claim 16 , wherein the configuring is carried out during at least one of an initialization process, periodically during normal operation, or randomly on demand.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 2, 2023
From: MANAPRAGADA, SAI C.
To: XIFI NETWORKS R&D INC.
Reel/Frame 064462/0164 →
Continuity (3)
Provisional Application 61897219 · Oct 30, 2013
Provisional Application 61897216 · Oct 30, 2013
Related Publication 20150117301A1 · Apr 30, 2015