IP Library Granted Patent US 12,593,349
Granted Patent B2
US 12,593,349 · App. 18/254,789 · Granted Mar 31, 2026

Communication apparatus and communication method for prioritized traffic

Inventors: Rojan Chitrakar (Singapore, SG); Yoshio Urabe (Nara, JP)
Assignee: Panasonic Intellectual Property Corporation of America
H04W72/569H04W72/12H04W84/12
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Quick Facts
Patent No.
US 12,593,349
App. No.
18/254,789
Granted
Mar 31, 2026
Kind
B2
Abstract

The present disclosure provides a communication apparatus and a communication method for prioritized traffic. The communication apparatus, comprising: a receiver, which, in operation, receives from another communication apparatus a notification of one or more priority service periods (SPs), each SP being a time period in which only frames belonging to a traffic type designated by the other communication apparatus are allowed to be transmitted; and circuitry, which, in operation, determines if at least one frame of the designated traffic type is to be transmitted in one of the one or more SPs, and refrains from transmitting during the one of the one of more SPs in response to the determination that there are no frames of the designated traffic type to be transmitted.

Claims (39)

1 . A communication apparatus, comprising:

a receiver, which, in operation, receives from another communication apparatus a notification of one or more priority service periods (SPs), each SP being a time period in which transmission of frames belonging to a traffic type different from a traffic type designated by the other communication apparatus is restricted; and

circuitry, which, in operation, determines if at least one frame of the designated traffic type is to be transmitted in one of the one or more SPs, and refrains from transmitting during the one of the one or more SPs in response to the determination that there are no frames of the designated traffic type to be transmitted, wherein:

the circuitry, in operation, controls transmission to the other communication apparatus of a first request signal specifying a set of parameters for the one of the one or more SPs, the first request signal including: a wake up time, a minimum wake up duration, a wake interval, a channel, or combinations thereof;

the receiver, in operation, receives from the other communication apparatus a first response signal indicating an acceptance of the set of parameters specified for the one of the one or more SPs; and

the circuitry, in response to receiving the first response signal, determines that the communication apparatus is associated with the one of the one or more SPs and set up with the set of parameters for transmissions during the one of the one or more SPs.

2 . The communication apparatus of claim 1 , wherein:

the receiver, in operation, receives from the other communication apparatus a second request signal specifying a set of parameters for the one of the one or more SPs, the second request signal including: a wake up time, a minimum wake up duration, a wake interval, a channel, or combinations thereof; and

the circuitry, in response to receiving the second request signal:

controls transmission to the other communication apparatus of a second response signal indicating an acceptance of the set of parameters specified in the second request signal for the one of the one or more SPs, and

determines that the communication apparatus is associated with the one of the one or more SPs and set up with the set of parameters for transmission during the one of the one or more SPs.

3 . The communication apparatus of claim 1 , wherein:

the circuitry, in operation, controls transmission, to the other communication apparatus, of a request to initiate the transmissions during the one of the one or more SPs; and

the receiver, in operation, receives a response signal to the request to initiate the transmissions from the other communication apparatus, the response signal to the request to initiate the transmissions indicating that the communication apparatus is allowed to initiate the transmissions during the one of the one or more SPs.

4 . The communication apparatus of claim 1 , wherein the one of the one or more SPs is a broadcast Target Wake Time service period (TWT SP) carrying an indication of restrictions of the one of the one or more SPs and specifying the designated traffic type, and the circuitry is configured to generate one or more frames of the designated traffic type within the one of the one or more SPs.

5 . The communication apparatus of claim 1 , wherein the designated traffic type is one of a low latency traffic or a National Security and Emergency Preparedness traffic.

6 . The communication apparatus of claim 1 , wherein the receiver receives, during the one of the one or more SPs, a legacy frame carrying a network allocation vector (NAV) exclusion field; and wherein the circuitry is configured to, in response to determining that the communication apparatus is associated with the one of the one or more SPs, refrain from setting the NAV of the communication apparatus, regardless of whether the legacy frame is addressed to the communication apparatus or not.

7 . The communication apparatus of claim 6 , wherein the legacy frame is a Request To Send (RTS) frame carrying a first NAV exclusion field with a NAV exclusion field value and addressed to the communication apparatus; and wherein the circuitry is configured to generate a Clear To Send (CTS) frame carrying a second NAV exclusion field set to the NAV exclusion field value.

8 . The communication apparatus of claim 1 , wherein the one of the one or more SPs is a broadcast Target Wake Time service period (TWT SP) carrying an indication of restrictions of the one of the one or more SPs; and wherein the receiver receives one or more Trigger frames during the one of the one or more SPs specifying the designated traffic type.

9 . The communication apparatus of claim 1 , wherein the receiver receives from the other communication apparatus a normal OFDMA (orthogonal frequency division multiple access) Contention Window (OCW) range for a normal Uplink OFDMA-based Random Access (UORA) and a prioritized OCW range; wherein the circuitry is configured to compute parameters of a prioritized UORA based on the received prioritized OCW range; and wherein the receiver receives one or more Trigger frames, each of the one or more Trigger frames allocating one or more Random Access Resource Units (RA-RUs) and specifying the designated traffic type.

10 . A communication method performed by a communication apparatus, comprising:

receiving from another communication apparatus a notification of one or more priority service periods (SPs), each SP being a time period in which transmission of frames belonging to a traffic type different from a traffic type designated by the other communication apparatus is restricted;

determining if at least one frame of the designated traffic type is to be transmitted in one of the one or more SPs;

refraining from transmitting during the one of the one of more SPs in response to the determination that there are no frames of the designated traffic type to be transmitted;

transmitting to the other communication apparatus a first request signal specifying a set of parameters for the one of the one or more SPs, the first request signal including: a wake up time, a minimum wake up duration, a wake interval, a channel, or combinations thereof;

receiving from the other communication apparatus a first response signal indicating an acceptance of the set of parameters specified for the one of the one or more SPs; and

in response to receiving the first response signal, determining that the communication apparatus is associated with the one of the one or more SPs and set up with the set of parameters for transmissions during the one of the one or more SPs.

11 . The communication method of claim 10 , comprising:

receiving from the other communication apparatus a second request signal specifying a set of parameters for the one of the one or more SPs, the second request signal including a wake up time, a minimum wake up duration, a wake interval, a channel, or combinations thereof; and

in response to receiving the second request signal:

transmitting to the other communication apparatus a second response signal indicating an acceptance of the set of parameters specified in the second request signal for the one of the one or more SPs;

determining that the communication apparatus is associated with the one of the one or more SPs; and

setting up with the set of parameters for transmission during the one of the one or more SPs.

12 . The communication method of claim 10 , comprising:

transmitting to the other communication apparatus a request to initiate the transmissions during the one of the one or more SPs; and

receiving a response signal to the request to initiate the transmissions from the other communication apparatus, the response signal to the requests to initiate the transmissions indicating that the communication apparatus is allowed to initiate the transmissions during the one of the one or more SPs.

13 . The communication method of claim 10 , wherein the one of the one or more SPs is a broadcast Target Wake Time service period (TWT SP) carrying an indication of restrictions of the one of the one or more SPs and specifying the designated traffic type; and the method comprises generating one or more frames of the designated traffic type within the one of the one or more SPs.

14 . The communication method of claim 10 , wherein each of the SPs is a time period in which only frames belonging to the designated traffic type are allowed to be transmitted.

15 . The communication apparatus of claim 1 , wherein each of the SPs is a time period in which only frames belonging to the designated traffic type are allowed to be transmitted.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 29, 2023
From: CHITRAKAR, ROJAN; URABE, YOSHIO
To: PANASONIC INTELLECTUAL PROPERTY CORPORATION OF AMERICA
Reel/Frame 065691/0585 →
Priority Claims (1)
SG 10202012139Q · Dec 4, 2020 · national
Continuity (1)
Related Publication 20240032089A1 · Jan 25, 2024
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