Combined coordinated spatial reuse, beamforming, and nulling to increase spectral efficiency in high-density wireless networks
Spectral efficiency in dense multi-access point wireless networks is improved by combining coordinated spatial reuse and coordinated beamforming/nulling schemes. Access points are classified as sharing or shared based on medium access control, and stations are categorized into largest and smallest coordination gain areas. Coordinated spatial reuse is applied to non-overlapping stations in a small coordination gain area, while coordinated beamforming/nulling is used for overlapping stations in a largest coordination gain area. The shared access point adjusts its transmit power to minimize interference. Channel state information feedback overhead is reduced by considering only links related to the largest coordination gain area. The proposed method increases spectral efficiency, reduces overhead, and enhances coverage compared to using coordinated spatial reuse or coordinated beamforming/nulling alone.
1 . A method comprising:
at a wireless device functioning as a sharing access point in a wireless network:
wirelessly sending a beacon or management frame to find a shared access point in the wireless network that is capable of coordinated spatial reuse operation;
applying a coordinated spatial reuse scheme to one or more non-overlapping stations in the wireless network within a smallest coordination gain area of the wireless network;
applying a coordinated beamforming scheme, a coordinated nulling scheme, or a combination of a coordinated beamforming scheme and a coordinated nulling scheme to one or more overlapping stations in the wireless network within a largest coordination gain area of the wireless network;
wirelessly transmitting data to an associated station within the smallest coordination gain area according to the coordinated spatial reuse scheme; and
wirelessly transmitting data to an associated station within the largest coordination gain area according to the coordinated beamforming scheme, the coordinated nulling scheme, or a combination of a coordinated beamforming scheme and a coordinated nulling scheme, wherein the applying to the one or more overlapping stations comprises:
allocating resources for channel state information (CSI) feedback only to the one or more overlapping stations; and
applying, based on CSI feedback received via the resource from the one or more overlapping stations, the coordinated beamforming scheme, the coordinated nulling scheme, or the combination of the coordinated beamforming scheme and the coordinated nulling scheme to the one or more overlapping stations.
2 . The method of claim 1 , further comprising:
at the wireless device functioning as the sharing access point:
after wirelessly sending the beacon or management frame to find a shared access point in the wireless network that is capable of coordinated spatial reuse operation, wirelessly receiving an indication sent by a candidate shared access point in the wireless network that the candidate shared access point supports coordinated spatial reuse operation; and
selecting the candidate shared access point as the shared access point.
3 . The method of claim 1 , further comprising:
at the wireless device functioning as the sharing access point:
participating in an enhanced distributed channel access (EDCA) comparison; and
selecting itself as the sharing access point based on a result of the EDCA comparison.
4 . The method of claim 1 , further comprising:
at the wireless device functioning as the sharing access point:
using beacon measurement type, ongoing packets, or Null Data Packet (NDP) frames to measure a received signal strength indicator (RSSI) and a tolerable receiver interference level (TRIL) for an associated station.
5 . The method of claim 4 , further comprising:
at the wireless device functioning as the sharing access point:
wirelessly transmitting the received signal strength indicator (RSSI) and the tolerable receiver interference level (TRIL) for the associated station to the shared access point for use by the shared access point to update a transmit power of the shared access point according to the coordinated spatial reuse scheme.
6 . The method of claim 1 ,
wherein the allocating resources for CSI feedback comprises:
allocating wide band resources only to the one or more overlapping stations, excluding the one or more non-overlapping stations, to reduce CSI feedback overhead.
7 . A method comprising:
at a wireless device functioning as a shared access point in a wireless network:
wirelessly transmitting an indication that the shared access point is capable of coordinated spatial reuse operation;
using received signal strength indicator (RSSI) information and received tolerable receiver interference level (TRIL) information to update a transmit power of the shared access point in accordance with a coordinated spatial reuse scheme;
applying the coordinated spatial reuse scheme to one or more non-overlapping stations in the wireless network within a smallest coordination gain area of the wireless network;
applying a coordinated beamforming scheme, a coordinated nulling scheme, or a combination of a coordinated beamforming scheme and a coordinated nulling scheme to one or more overlapping stations in the wireless network within a largest coordination gain area of the wireless network;
wirelessly transmitting data to an associated station within the smallest coordination gain area according to the coordinated spatial reuse scheme; and
wirelessly transmitting data to an associated station within the largest coordination gain area according to the coordinated beamforming scheme, the coordinated nulling scheme, or a combination of a coordinated beamforming scheme and a coordinated nulling scheme, wherein the applying to the one or more overlapping stations comprises:
allocating resources for channel state information (CSI) feedback only to the one or more overlapping stations; and
applying, based on CSI feedback received via the resource from the one or more overlapping stations, the coordinated beamforming scheme, the coordinated nulling scheme, or the combination of a coordinated beamforming scheme and a coordinated nulling scheme to the one or more overlapping stations.
8 . The method of claim 7 , further comprising:
at the wireless device functioning as the shared access point:
applying the coordinated beamforming scheme, the coordinated nulling scheme, or the combination of a coordinated beamforming scheme and a coordinated nulling scheme to one or more overlapping stations in the wireless network within the largest coordination gain area of the wireless network based on determining that an updated transmit power for the shared access point is not sufficient to cover all stations associated with the shared access point.
9 . The method of claim 7 ,
wherein the allocating resources for CSI feedback comprises:
allocating wide band resources only to the one or more overlapping stations, excluding the one or more non-overlapping stations, to reduce CSI feedback overhead.
10 . The method of claim 7 , further comprising:
at the wireless device functioning as the shared access point:
wirelessly transmitting the indication that the shared access point is capable of coordinated spatial reuse operation in response to receiving a beacon or management frame from a sharing access point the wireless network, the beacon or management frame sent by the sharing access point to find a candidate access point in the wireless network that is capable of coordinate spatial reuse operation.
11 . A wireless device to function as a sharing access point in a wireless network, the wireless device comprising:
a radio frequency transceiver;
a memory device storing a set of instructions; and
a set of one or more processors coupled to the memory device, wherein the set of instructions, when executed by one or more processors of the set of one or more processors, causes the sharing access point to perform:
wirelessly sending a beacon or management frame to find a shared access point in the wireless network that is capable of coordinated spatial reuse operation;
applying a coordinated spatial reuse scheme to one or more non-overlapping stations in the wireless network within a smallest coordination gain area of the wireless network;
applying a coordinated beamforming scheme, a coordinated nulling scheme, or a combination of a coordinated beamforming scheme and a coordinated nulling scheme to one or more overlapping stations in the wireless network within a largest coordination gain area of the wireless network;
wirelessly transmitting data to an associated station within the smallest coordination gain area according to the coordinated spatial reuse scheme; and
wirelessly transmitting data to an associated station within the largest coordination gain area according to the coordinated beamforming scheme, the coordinated nulling scheme, or a combination of a coordinated beamforming scheme and a coordinated nulling scheme, wherein the applying to the one or more overlapping stations comprises:
allocating resources for channel state information (CSI) feedback only to the one or more overlapping stations; and
applying, based on CSI feedback received via the resource from the one or more overlapping stations, the coordinated beamforming scheme, the coordinated nulling scheme, or the combination of a coordinated beamforming scheme and a coordinated nulling scheme to the one or more overlapping stations.
12 . The wireless device of claim 11 , the memory device storing an additional set of instructions which, when executed by one or more processors of the set of one or more processors, causes the sharing access point to perform:
after wirelessly sending the beacon or management frame to find a shared access point in the wireless network that is capable of coordinated spatial reuse operation, wirelessly receiving an indication sent by a candidate shared access point in the wireless network that the candidate shared access point supports coordinated spatial reuse operation; and
selecting the candidate shared access point as the shared access point.
13 . The wireless device of claim 11 , the memory device storing an additional set of instructions which, when executed by one or more processors of the set of one or more processors, causes the sharing access point to perform:
participating in an enhanced distributed channel access (EDCA) comparison; and
selecting itself as the sharing access point based on a result of the EDCA comparison.
14 . The wireless device of claim 11 , the memory device storing an additional set of instructions which, when executed by one or more processors of the set of one or more processors, causes the sharing access point to perform:
using beacon measurement type, ongoing packets, or Null Data Packet (NDP) frames to measure a received signal strength indicator (RSSI) and a tolerable receiver interference level (TRIL) for an associated station.
15 . The wireless device of claim 14 , the memory device storing an additional set of instructions which, when executed by one or more processors of the set of one or more processors, causes the sharing access point to perform:
wirelessly transmitting the received signal strength indicator (RSSI) and the tolerable receiver interference level (TRIL) for the associated station to the shared access point for use by the shared access point to update a transmit power of the shared access point according to the coordinated spatial reuse scheme.
16 . The wireless device of claim 11 , wherein the allocating resources for CSI feedback comprises:
allocating wide band resources only to the one or more overlapping stations, excluding the one or more non-overlapping stations, to reduce CSI feedback overhead.
17 . A wireless device to function as a shared access point in a wireless network, the wireless device comprising:
a radio frequency transceiver;
a memory device storing a set of instructions; and
a set of one or more processors coupled to the memory device, wherein the set of instructions, when executed by one or more processors of the set of one or more processors, causes the shared access point to perform:
wirelessly transmitting an indication that the shared access point is capable of coordinated spatial reuse operation;
using received signal strength indicator (RSSI) information and received tolerable receiver interference level (TRIL) information to update a transmit power of the shared access point in accordance with a coordinated spatial reuse scheme;
applying the coordinated spatial reuse scheme to one or more non-overlapping stations in the wireless network within a smallest coordination gain area of the wireless network;
applying a coordinated beamforming scheme, a coordinated nulling scheme, or a combination of a coordinated beamforming scheme and a coordinated nulling scheme to one or more overlapping stations in the wireless network within a largest coordination gain area of the wireless network;
wirelessly transmitting data to an associated station within the smallest coordination gain area according to the coordinated spatial reuse scheme; and
wirelessly transmitting data to an associated station within the largest coordination gain area according to the coordinated beamforming scheme, the coordinated nulling scheme, or the combination of a coordinated beamforming scheme and a coordinated nulling scheme, wherein the applying to the one or more overlapping stations comprises:
allocating resources for channel state information (CSI) feedback only to the one or more overlapping stations; and
applying, based on CSI feedback received via the resource from the one or more overlapping stations, the coordinated beamforming scheme, the coordinated nulling scheme, or the combination of a coordinated beamforming scheme and a coordinated nulling scheme to the one or more overlapping stations.
18 . The wireless device of claim 17 , the memory device storing an additional set of instructions which, when executed by one or more processors of the set of one or more processors, causes the shared access point to perform:
applying the coordinated beamforming scheme, the coordinated nulling scheme, or the combination of a coordinated beamforming scheme and a coordinated nulling scheme to one or more overlapping stations in the wireless network within the largest coordination gain area of the wireless network based on determining that an updated transmit power for the shared access point is not sufficient to cover all stations associated with the shared access point.
19 . The wireless device of claim 17 , wherein the allocating resources for CSI feedback comprises:
allocating wide band resources only to the one or more overlapping stations, excluding the one or more non-overlapping stations, to reduce CSI feedback overhead.
20 . The wireless device of claim 17 , the memory device storing an additional set of instructions which, when executed by one or more processors of the set of one or more processors, causes the shared access point to perform:
wirelessly transmitting the indication that the shared access point is capable of coordinated spatial reuse operation in response to receiving a beacon or management frame from a sharing access point the wireless network, the beacon or management frame sent by the sharing access point to find a candidate access point in the wireless network that is capable of coordinate spatial reuse operation.