IP Library Granted Patent US 10,716,071
Granted Patent B2
US 10,716,071 · App. 16/175,981 · Granted Jul 14, 2020

Dynamic power adjustment for small cells

Inventors: Utsaw Kumar (Sunnyvale, CA); Shailender Potharaju (Fremont, CA); Paul Petrus (San Jose, CA)
Assignee: ARRIS Enterprises LLC
H04W52/244H04B17/318H04W24/10H04W52/143H04W52/245H04W52/247H04W52/367H04W52/362H04W52/386H04W84/045H04W92/20
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Quick Facts
Patent No.
US 10,716,071
App. No.
16/175,981
Granted
Jul 14, 2020
Kind
B2
Abstract

A radio node may transmit a signal using a transmit power. Then, the radio node may adjust the transmit power within a range of values. The adjustment may include reducing the transmit power when a spatial received signal strength indication (RSSI) metric of the radio node is greater than a first threshold value and a coverage criterion is met. Note that the spatial RSSI metric of the radio node may correspond to a set of temporal RSSI metrics of the radio node received from neighboring radio nodes. Moreover, the coverage criterion may be that less than a portion of RSSI measurements of the radio node associated with electronic devices, which are communicatively attached with the radio node, is less than a second threshold value. Alternatively, the adjustment may include increasing the transmit power when the spatial RSSI metric is less than the first threshold value.

Claims (59)

1. A radio node, comprising:

an antenna; and

an interface circuit, coupled to the antenna, configured to communicate with neighboring radio nodes, wherein the radio node is configured to perform operations comprising:

transmitting, via the interface circuit, a signal using a transmit power;

adjusting the transmit power within a range of values, wherein the adjustment comprises:

reducing the transmit power when a spatial received signal strength indication (RSSI) metric of the radio node is greater than a first threshold value and a coverage criterion is met, wherein the spatial RSSI metric of the radio node corresponds to a set of temporal RSSI metrics of the radio node received from the neighboring radio nodes,

wherein the set of temporal RSSI metrics correspond to RSSI measurements of the radio node at the neighboring radio nodes,

wherein the coverage criterion is that at least a fraction of RSSI measurements of the radio node associated with electronic devices are greater than a second threshold value, and

wherein the electronic devices are communicatively attached with the radio node and the electronic devices are a different type of electronic device from that of the neighboring radio nodes; and

increasing the transmit power when the spatial RSSI metric is less than the first threshold value.

2. The radio node of claim 1 , wherein the one or more operations comprise:

measuring, at the interface circuit, RSSIs of the neighboring radio nodes;

computing temporal RSSI metrics based at least in part on the RSSI measurements of the neighboring radio nodes;

exchanging, via the interface circuit, information specifying the set of temporal RSSI metrics with the neighboring radio nodes, wherein the set of temporal RSSI metrics comprise the computed temporal RSSI metrics;

calculating the spatial RSSI metric representing the environment of the radio node based at least in part on the set of temporal RSSI metrics of the radio node received from the neighboring radio nodes, wherein a given temporal RSSI metric of the radio node in the set of temporal RSSI metrics used to compute the spatial RSSI metric is associated with a given neighboring radio node, and wherein the spatial RSSI metric is different from the set of temporal RSSI metrics; and

receiving, at the interface circuit, the RSSI measurements of the radio node associated with the electronic devices that are communicatively attached with the radio node.

3. The radio node of claim 2 , wherein the interface circuit is configured to measure the RSSIs using a network listen mode.

4. The radio node of claim 2 , wherein computing the temporal RSSI metrics comprises at least one of: a median, an infinite impulse response filter, or a weighted mean.

5. The radio node of claim 2 , wherein calculating the spatial RSSI metric comprises a weighted mean.

6. The radio node of claim 1 , wherein the measuring of the RSSI of the neighboring radio nodes is performed at same frequency as the RSSI measurements of the radio node associated with the electronic devices that are communicatively attached to the radio node.

7. The radio node of claim 1 , wherein the neighboring radio nodes comprise at least intra-frequency neighboring radio nodes that operate at the same frequency as the radio node.

8. The radio node of claim 1 , wherein the RSSIs comprise reference signal receive powers (RSRPs).

9. The radio node of claim 1 , wherein the radio node and the neighboring radio nodes comprise eNodeBs.

10. The radio node of claim 1 , wherein the interface circuit is configured to exchange the information specifying the set of temporal RSSI metrics using one or more X2 interface connections.

11. The radio node of claim 1 , wherein the transmit power is initially a maximum transmit power.

12. A non-transitory computer-readable storage medium for use in conjunction with a radio node, the computer-readable storage medium storing program instructions, wherein, when executed by the radio node, the program instructions cause the radio node to perform operations comprising:

transmitting, via an interface circuit in the radio node, a signal using a transmit power;

adjusting the transmit power within a range of values, wherein the adjustment comprises:

reducing the transmit power when a spatial received signal strength indication (RSSI) metric of the radio node is greater than a first threshold value and a coverage criterion is met, wherein the spatial RSSI metric of the radio node corresponds to a set of temporal RSSI metrics of the radio node received from neighboring radio nodes,

wherein the set of temporal RSSI metrics correspond to RSSI measurements of the radio node at the neighboring radio nodes,

wherein the coverage criterion is that at least a fraction of RSSI measurements of the radio node associated with electronic devices are greater than a second threshold value, and

wherein the electronic devices are communicatively attached with the radio node and the electronic devices are a different type of electronic device from that of the neighboring radio nodes; and

increasing the transmit power when the spatial RSSI metric is less than the first threshold value.

13. The non-transitory computer-readable storage medium of claim 12 , wherein the one or more operations comprise:

measuring, at the interface circuit, RSSIs of the neighboring radio nodes;

computing temporal RSSI metrics based at least in part on the RSSI measurements of the neighboring radio nodes;

exchanging, via the interface circuit, information specifying the set of temporal RSSI metrics with the neighboring radio nodes, wherein the set of temporal RSSI metrics comprise the computed temporal RSSI metrics;

calculating the spatial RSSI metric representing the environment of the radio node based at least in part on the set of temporal RSSI metrics of the radio node received from the neighboring radio nodes, wherein a given temporal RSSI metric of the radio node in the set of temporal RSSI metrics used to compute the spatial RSSI metric is associated with a given neighboring radio node, and wherein the spatial RSSI metric is different from the set of temporal RSSI metrics; and

receiving, at the interface circuit, the RSSI measurements of the radio node associated with the electronic devices that are communicatively attached with the radio node.

14. The non-transitory computer-readable storage medium of claim 13 , wherein computing the temporal RSSI metrics comprises at least one of: a median, an infinite impulse response filter, or a weighted mean.

15. The non-transitory computer-readable storage medium of claim 13 , wherein calculating the spatial RSSI metric comprises a weighted mean.

16. The non-transitory computer-readable storage medium of claim 12 , wherein the RSSIs comprise reference signal receive powers (RSRPs).

17. The non-transitory computer-readable storage medium of claim 12 , wherein the radio node and the neighboring radio nodes comprise eNodeBs.

18. A method for adjusting a transmit power, comprising:

by a radio node:

transmitting, via an interface circuit in the radio node, a signal using a transmit power;

adjusting the transmit power within a range of values, wherein the adjustment comprises:

reducing the transmit power when a spatial received signal strength indication (RSSI) metric of the radio node is greater than a first threshold value and a coverage criterion is met, wherein the spatial RSSI metric of the radio node corresponds to a set of temporal RSSI metrics of the radio node received from neighboring radio nodes,

wherein the set of temporal RSSI metrics correspond to RSSI measurements of the radio node at the neighboring radio nodes,

wherein the coverage criterion is that at least a fraction of RSSI measurements of the radio node associated with electronic devices are greater than a second threshold value, and

wherein the electronic devices are communicatively attached with the radio node and the electronic devices are a different type of electronic device from that of the neighboring radio nodes; and

increasing the transmit power when the spatial RSSI metric is less than the first threshold value.

19. The method of claim 18 , wherein the method comprises:

measuring, at the interface circuit, RSSIs of the neighboring radio nodes;

computing temporal RSSI metrics based at least in part on the RSSI measurements of the neighboring radio nodes;

exchanging, via the interface circuit, information specifying the set of temporal RSSI metrics with the neighboring radio nodes, wherein the set of temporal RSSI metrics comprise the computed temporal RSSI metrics;

calculating the spatial RSSI metric representing the environment of the radio node based at least in part on the set of temporal RSSI metrics of the radio node received from the neighboring radio nodes, wherein a given temporal RSSI metric of the radio node in the set of temporal RSSI metrics used to compute the spatial RSSI metric is associated with a given neighboring radio node, and wherein the spatial RSSI metric is different from the set of temporal RSSI metrics; and

receiving, at the interface circuit, the RSSI measurements of the radio node associated with the electronic devices that are communicatively attached with the radio node.

20. The method of claim 18 , wherein the RSSIs comprise reference signal receive powers (RSRPs).

Assignments (12)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 30, 2025
From: ARRIS ENTERPRISES LLC
To: OUTDOOR WIRELESS NETWORKS LLC
Reel/Frame 071262/0585 →
PARTIAL TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENTS RECORDED AT REEL 069889/FRAME 0114 Recorded May 8, 2025
From: APOLLO ADMINISTRATIVE AGENCY LLC
To: ARRIS ENTERPRISES LLC; COMMSCOPE TECHNOLOGIES LLC
Reel/Frame 071234/0055 →
PARTIAL TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENTS Recorded May 8, 2025
From: U.S. BANK TRUST COMPANY, NATIONAL ASSOCIATION
To: ARRIS ENTERPRISES LLC; COMMSCOPE TECHNOLOGIES LLC
Reel/Frame 071226/0923 →
PARTIAL TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENTS AT REEL/FRAME NO. 60752/0001 Recorded May 6, 2025
From: WILMINGTON TRUST, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
To: ARRIS ENTERPRISES LLC; COMMSCOPE TECHNOLOGIES LLC
Reel/Frame 071189/0001 →
PARTIAL RELEASE OF SECURITY INTEREST AT REEL/FRAME 049892/0396 Recorded May 2, 2025
From: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
To: ARRIS ENTERPRISES LLC; COMMSCOPE TECHNOLOGIES LLC
Reel/Frame 071156/0020 →
RELEASE OF SECURITY INTEREST AT REEL/FRAME 049905/0504 Recorded Dec 19, 2024
From: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
To: ARRIS ENTERPRISES LLC (F/K/A ARRIS ENTERPRISES, INC.); ARRIS TECHNOLOGY, INC.; ARRIS SOLUTIONS, INC.; COMMSCOPE, INC. OF NORTH CAROLINA; COMMSCOPE TECHNOLOGIES LLC; RUCKUS WIRELESS, LLC (F/K/A RUCKUS WIRELESS, INC.)
Reel/Frame 071477/0255 →
SECURITY INTEREST Recorded Dec 17, 2024
From: ARRIS ENTERPRISES LLC; COMMSCOPE TECHNOLOGIES LLC; COMMSCOPE INC., OF NORTH CAROLINA; OUTDOOR WIRELESS NETWORKS LLC; RUCKUS IP HOLDINGS LLC
To: APOLLO ADMINISTRATIVE AGENCY LLC
Reel/Frame 069889/0114 →
SECURITY INTEREST Recorded Nov 19, 2021
From: ARRIS SOLUTIONS, INC.; ARRIS ENTERPRISES LLC; COMMSCOPE TECHNOLOGIES LLC; COMMSCOPE, INC. OF NORTH CAROLINA; RUCKUS WIRELESS, INC.
To: WILMINGTON TRUST
Reel/Frame 060752/0001 →
TERM LOAN SECURITY AGREEMENT Recorded Jul 3, 2019
From: COMMSCOPE, INC. OF NORTH CAROLINA; COMMSCOPE TECHNOLOGIES LLC; ARRIS ENTERPRISES LLC; ARRIS TECHNOLOGY, INC.; RUCKUS WIRELESS, INC.; ARRIS SOLUTIONS, INC.
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 049905/0504 →
ABL SECURITY AGREEMENT Recorded Jul 3, 2019
From: COMMSCOPE, INC. OF NORTH CAROLINA; COMMSCOPE TECHNOLOGIES LLC; ARRIS ENTERPRISES LLC; ARRIS TECHNOLOGY, INC.; RUCKUS WIRELESS, INC.; ARRIS SOLUTIONS, INC.
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 049892/0396 →
PATENT SECURITY AGREEMENT Recorded Jul 3, 2019
From: ARRIS ENTERPRISES LLC
To: WILMINGTON TRUST, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 049820/0495 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 4, 2019
From: KUMAR, UTSAW; POTHARAJU, SHAILENDER; PETRUS, PAUL
To: ARRIS ENTERPRISES LLC
Reel/Frame 047906/0069 →
Continuity (2)
Provisional Application 62579360 · Oct 31, 2017
Related Publication 20190132806A1 · May 2, 2019
Cited By (1)
US 12,265,128