Preemption scheduling for raw deterministic traffic
Techniques for managing communications between access points (APs) and stations (STAs) are described herein. In one embodiment, an AP broadcasts a trigger message to a plurality of STAs, the trigger message including a matrix defining a plurality of resource units (RUs) that the plurality of STAs are assigned to transmit or receive data, and a fragment flag. The presence of the fragment flag, within the scheduling matrix, informs the AP that the data transmission that the fragment flag is appended to is a partial transmission that will be completed in a subsequent transmission opportunity.
1 . An access point (AP) comprising:
a transmitter configured to:
transmit a first message to a station (STA) indicating a first fixed duration in a first resource unit (RU) that the STA can use to transmit data to the AP;
receive, after transmitting the first message to the STA, traffic in the first RU from the STA having a fragment flag, the fragment flag indicating the STA sent an incomplete packet during the first fixed duration, wherein the fragment flag is transmitted at an end of the first RU; and
transmit a second message to the STA indicating a second fixed duration in a second RU that the STA can use to transmit a remaining portion of the packet to the AP.
2 . The AP of claim 1 , wherein the first and second RUs are a same frequency band.
3 . The AP of claim 1 , wherein the first and second RUs are different frequency bands.
4 . The AP of claim 1 , wherein the first RU comprises the first fixed duration for the STA and a third fixed duration for a second STA to use to transmit data to the AP.
5 . The AP of claim 1 , wherein the transmitter is configured to:
before receiving the fragment flag, receive a preemption flag from the STA indicating the STA is switching between transmitting different priority traffic within the first fixed duration of the first RU.
6 . The AP of claim 5 , wherein the traffic is prioritized based on classification of the data as one of express, non-express, or deterministic.
7 . The AP of claim 6 , wherein the first message comprises a trigger frame scheduling transmission of data for a first transmission opportunity of the first fixed duration and the second message comprises an echo trigger frame scheduling transmission of data for a second transmission opportunity of the second fixed duration that is shorter than the first fixed duration.
8 . A method of data transmission, executed by an AP comprising:
transmitting a first message to a station (STA) indicating a first fixed duration in a first resource unit (RU) that the STA can use to transmit data to the AP;
receiving, after transmitting the first message to the STA, traffic in the first RU from the STA having a fragment flag, the fragment flag indicating the STA sent an incomplete packet during the first fixed duration, wherein the fragment flag is transmitted at an end of the first RU; and
transmitting a second message to the STA indicating a second fixed duration in a second RU that the STA can use to transmit a remaining portion of the packet to the AP.
9 . The method of claim 8 , wherein the first and second RUs are a same frequency band.
10 . The method of claim 8 , wherein the first and second RUs are different frequency bands.
11 . The method of claim 8 , wherein the first RU comprises the first fixed duration for the STA and a third fixed duration for a second STA to use to transmit data to the AP.
12 . The method of claim 8 , further comprising, before receiving the fragment flag:
receiving a preemption flag from the STA indicating the STA is switching between transmitting different priority traffic within the first fixed duration of the first RU.
13 . The method of claim 12 , wherein the traffic is prioritized based on classification of the data as one of express, non-express, or deterministic.
14 . The method of claim 13 , wherein the first message comprises a trigger frame scheduling transmission of data for a first transmission opportunity of the first fixed duration and the second message comprises an echo trigger frame scheduling transmission of data for a second transmission opportunity of the second fixed duration that is shorter than the first fixed duration.
15 . A non-transitory computer-readable medium containing computer program code that, when executed by operation of one or more computer processors, performs an operation comprising:
transmitting a first message to a station (STA) indicating a first fixed duration in a first resource unit (RU) that the STA can use to transmit data to an AP;
receiving, after transmitting the first message to the STA, traffic in the first RU from the STA having a fragment flag, the fragment flag indicating the STA sent an incomplete packet during the first fixed duration, wherein the fragment flag is transmitted at an end of the first RU; and
transmitting a second message to the STA indicating a second fixed duration in a second RU that the STA can use to transmit a remaining portion of the packet to the AP.
16 . The non-transitory computer-readable medium of claim 15 , wherein the first and second RUs are a same frequency band.
17 . The non-transitory computer-readable medium of claim 15 , wherein the first and second RUs are different frequency bands.
18 . The non-transitory computer-readable medium of claim 17 , wherein the first RU comprises the first fixed duration for the STA and a third fixed duration for a second STA to use to transmit data to the AP.
19 . The non-transitory computer-readable medium of claim 18 , wherein the operation further comprises, before receiving the fragment flag:
receiving a preemption flag from the STA indicating the STA is switching between transmitting different priority traffic within the first fixed duration of the first RU.
20 . The non-transitory computer-readable medium of claim 19 , wherein the first message comprises a trigger frame scheduling transmission of data for a first transmission opportunity of the first fixed duration and the second message comprises an echo trigger frame scheduling transmission of data for a second transmission opportunity of the second fixed duration that is shorter than the first fixed duration.