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1 doc.: IEEE 802.15-<doc#>
<month year> doc.: IEEE <doc#> Project: IEEE P Working Group for Wireless Personal Area Networks (WPANs) Submission Title: [PHY pre-proposal for PAC common discovery mode] Date Submitted: [May 2013] Source: [Tae-Joon Park*, Jae-Min Ahn**, Keun Hyung Lee*, Wun-Cheol Jeong*, Chang-Sub Shin*, Hoyong Kang*] Company: [*ETRI, **Chungnam National Univ.] Re: [] Abstract: Notice: This document has been prepared to assist the IEEE P It is offered as a basis for discussion and is not binding on the contributing individual(s) or organization(s). The material in this document is subject to change in form and content after further study. The contributor(s) reserve(s) the right to add, amend or withdraw material contained herein. Release: The contributor acknowledges and accepts that this contribution becomes the property of IEEE and may be made publicly available by P <author>, <company>

2 PHY Pre-proposal for PAC common discovery mode
<month year> doc.: IEEE <doc#> PHY Pre-proposal for PAC common discovery mode Tae-Joon Park*, Jae-Min Ahn**, Keun Hyung Lee*, Wun-Cheol Jeong*, Chang-Sub Shin*, Hoyong Kang* *ETRI, **Chungnam National Univ <author>, <company>

3 Common discovery mode for PAC
PD finding Exchange PD capability Peer-to-peer connection setup To support interoperability between PAC devices regardless of frequency bands Discovery mode should be unique in PAC Optimized for peer-discovery

4 Requirements of Common discovery mode
Low HW implementation complexity RF chain ADC/DAC Baseband Simple and robust PHY IPR free to reduce the debate for mandatory mode  requires well known and simple PHY Robustness is more important than the transmission rate Single mode (modulation type, rate, etc.)

5 Messages over Common discovery mode
Beacon Broadcast PD capabilities Connection request IDs With the capabilities of requesting PD Connection acknowledge With the connection mode

6 Possible framing structure
Preamble Header Message type Length of PSDU Header check sequence PSDU Preamble Header PSDU

7 Possible modulation type
Binary FSK On-off Keying Differential BPSK Simple receiver structure with non-coherent demodulation Moderate performance

8 Pros and cons for modulation types
Binary FSK - Constant envelope - Simple receiver - Low bandwidth efficiency On-Off Keying Simplest receiver More bandwidth efficiency - Higher PAPR Differential BPSK Simple receiver - Digital Baseband implementation only

9 Encoding Error detection and retransmission only
Reducing the decoder complexity Simple CRC would be OK Ex: 8bit CRC

10 Preamble Purpose of preamble Signal detection AGC synchronization
AFC : frequency synchronization Symbol synchronization Frame synchronization Etc. Preamble sequence candidates CAZAC sequence M-sequence Barker code Gold code

11 Example of transmitter structure
Add CRC Scramble MUX PSDU information To transceiver Modulation And/or Spreading Add CRC Scramble Header information Preamble

12 PHY parameters Band candidates Sub-1GHz ISM : 2.4GHz, 5GHz 6-10GHz
Other licensed band Data rate and Bandwidth 50Kbps, 200KHz is enough for implementing common communication mode


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