WUR Synchronization Date: Authors: September 2017

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Presentation transcript:

WUR Synchronization Date: 2017-09-11 Authors: September 2017 Month Year doc.: IEEE 802.11-yy/xxxxr0 September 2017 WUR Synchronization Date: 2017-09-11 Authors: Yongho Seok, MediaTek Inc. John Doe, Some Company

September 2017 Introduction This submission discusses a partial timestamp field in WUR Beacon frames for a WUR synchronization Yongho Seok, MediaTek Inc.

September 2017 WUR Synchronization A TSF value to adjust a timer error of a WUR STA should be encoded to the partial timestamp in WUR Beacon frames [1] In this document, ±500 PPM is assumed for a TSF timer accuracy of a WUR STA 802.11 main radio’s TSF timer accuracy is ±100 ppm But, in a lower power device (e.g., NAN device), ±500 PPM could be a reasonable assumption [2] Yongho Seok, MediaTek Inc.

September 2017 WUR Synchronization The following table shows the number of a required bits for a partial timestamp field depending on various WUR Beacon Intervals, when 10 maximum missed WUR Beacon is supported WUR Beacon Interval (s) TSF Timer Error (ms) Partial Timestamp Bits (1us unit) 1 10 x ±0.5 14 2 10 x ±1 15 4 10 x ±2 16 8 10 x ±4 17 10 10 x ±5 Yongho Seok, MediaTek Inc.

WUR Synchronization WUR Beacon Interval of 1 s is usually recommended September 2017 WUR Synchronization WUR Beacon Interval of 1 s is usually recommended However, in an aspect of a protocol design, the supported WUR Beacon Interval in a WUR BSS should consider a maximum capability, even though some parameter is not frequently used Yongho Seok, MediaTek Inc.

September 2017 WUR Synchronization But, if we optimize the protocol design (in a context of power consumption) for a WUR Beacon Interval of 1 s, 8 us unit can be a best option 48 us WUR Rx power consumption is decreased by removing 3 bits (occupy the 12 symbol at 62.5 Kbps data rate) from the partial timestamp field 36 us WUR Rx Power consumption is increased by waking 4us earlier for compensating the TSF timer error Yongho Seok, MediaTek Inc.

September 2017 WUR Synchronization With 8 us unit, the following table shows the number of a required bits for a partial timestamp field depending on various WUR Beacon Interval, when 10 maximum missed WUR Beacons is supported WUR Beacon Interval (s) TSF Timer Error (ms) Partial Timestamp Bits (8 us unit) 1 10 x ±0.5 11 2 10 x ±1 12 4 10 x ±2 13 8 10 x ±4 14 10 10 x ±5 Yongho Seok, MediaTek Inc.

September 2017 Conclusion Considering an overhead of a WUR Beacon frame, it seems that a partial timestamp field between 12 and 14 bits is reasonable Our preference is 12 bits partial timestamp with 8 us unit The partial timestamp in WUR Beacon is set to the AP’s TSF[3:14] of the AP’s TSF value rounded to the nearest 16 integer Yongho Seok, MediaTek Inc.

September 2017 References [1] https://mentor.ieee.org/802.11/dcn/17/11-17-0575-03-00ba-spec-framework.docx [2] “Enabling always on service discovery: Wifi neighbor awareness networking”, IEEE Wireless Communications ( Volume: 22, Issue: 2, April 2015 ) Yongho Seok, MediaTek Inc.

September 2017 SP1 Do you support that a partial timestamp has 12 bits with 8 us unit? Yongho Seok, MediaTek Inc.