ECMA 397-2010 Short Distance Visible Light Communication (SDVLC)《短距离可见光通信(SDVLC)(第1版)》.pdf
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1、 Reference numberECMA-123:2010Ecma International 2010ECMA-397 1stEdition / December 2010 Short Distance Visible Light Communication (SDVLC) COPYRIGHT PROTECTED DOCUMENT Ecma International 2010 Ecma International 2010 iContents Page 1 Scope 1 2 Conformance . 1 3 Normative references 1 4 Terms and def
2、initions . 1 5 Conventions and notations 5 6 General . 5 7 Physical Layer . 6 8 Transmitter and Receiver Block Diagram . 7 8.1 Transmitter to Receiver Link 7 8.2 Data Encoding . 7 8.2.1 8B10 Data Encoding 7 8.2.2 2B4B Data Encoding . 7 8.3 Modulation . 8 8.4 Bit Order . 8 9 Frame Formats . 8 9.1 Fra
3、me Structure overview 8 9.2 Frame Structure Detail 10 9.2.1 Start Indicator Structure . 10 9.2.2 Control Header Structure 11 9.3 MAC PDU Structure . 13 9.3.1 MAC Header . 13 9.3.2 Payload . 14 9.3.3 Payload CRC 15 9.4 Visible Frame . 15 9.4.1 Visible Pattern 15 9.5 Cyclic Redundancy Check (CRC) 16 1
4、0 Connection Procedure 16 11 Association Operation Messages 17 11.1 Association Request (AS-REQ) . 17 11.2 Association Response (AS-RSP) . 18 11.3 Association Acknowledge (AS-ACK) 18 11.4 Disassociation Request (DAS-REQ) 19 11.5 Disassociation Response (DAS-RSP) . 19 11.6 Disassociation Acknowledge
5、(DAS-ACK) . 20 12 Data Burst Modes Operation 20 12.1 Periodic Burst Mode 20 12.1.1 Burst Request Message (BR-REQ) 21 12.1.2 Burst Response Message (BR-RSP) . 22 12.2 Aperiodic Burst Mode . 24 12.2.1 Aperiodic Burst Request Message (ABR-REQ) 25 12.2.2 Aperiodic Burst Response Message (ABR-RSP) . 26 1
6、3 Data Encoding Change . 28 13.1 ENC-REQ (Data Encoding Change Request) 29 13.2 ENC-RSP (Data Encoding Change Response) . 29 ii Ecma International 2010Introduction SDVLC uses visible light LEDs for data communication. In most cases, LEDs with the primary purpose of illumination will take on the seco
7、ndary purpose of acting as a digital data communication source; in other cases the LEDs primary purpose will be data communication while the secondary purpose will be to communicate visible status to the user. With the extension of the application of LEDs from the primary purpose of illumination to
8、the secondary purpose of data communication, VLC (Visible Light Communication) can be also applied to short range data communication. With SDVLC, “what you see is what you send”. One possible application of SDVLC is high speed mobile to mobile communication. This Ecma Standard has been adopted by th
9、e General Assembly of December 2010. Ecma International 2010 iii“DISCLAIMER This document and possible translations of it may be copied and furnished to others, and derivative works that comment on or otherwise explain it or assist in its implementation may be prepared, copied, published, and distri
10、buted, in whole or in part, without restriction of any kind, provided that the above copyright notice and this section are included on all such copies and derivative works. However, this document itself may not be modified in any way, including by removing the copyright notice or references to Ecma
11、International, except as needed for the purpose of developing any document or deliverable produced by Ecma International (in which case the rules applied to copyrights must be followed) or as required to translate it into languages other than English. The limited permissions granted above are perpet
12、ual and will not be revoked by Ecma International or its successors or assigns. This document and the information contained herein is provided on an “AS IS“ basis and ECMA INTERNATIONAL DISCLAIMS ALL WARRANTIES, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO ANY WARRANTY THAT THE USE OF THE INFORM
13、ATION HEREIN WILL NOT INFRINGE ANY OWNERSHIP RIGHTS OR ANY IMPLIED WARRANTIES OF MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE.“ iv Ecma International 2010Short Distance Visible Light Communication (SDVLC) 1 Scope This Ecma Standard specifies a PHY and MAC for communication of up to 10 cm dist
14、ance with an fmof 120 MHz using visual light with the wavelength between 380 and 780 nm. In addition it specifies human detectable brightness control that is independent from the modulation for the data transfer. 2 Conformance Conformant implementations: have both a Transmitter and a Receiver. use 8
15、B10B encoding and may use 2B4B encoding. use an fmof 120 MHz as specified in 8.3. 3 Normative references The following referenced documents are indispensable for the application of this document. For dated references, only the edition cited applies. For undated references, the latest edition of the
16、referenced document (including any amendments) applies. ECMA-340, Near Field Communication - Interface and Protocol (NFCIP-1) ISO/IEC 7498-1, Information technology Open Systems Interconnection Basic Reference Model Part 1: The Basic Model ISO/IEC 14165-251, Information technology - Fibre Channel -
17、Part 251: Framing and Signaling (FC-FS) ITU-T Z.100, Specification and description language (SDL) RFC 791, Internet Protocol - DARPA Internet Program Protocol Specification 4 Terms and definitions For the purposes of this document, the following terms, definitions and abbreviations apply, in additio
18、n to those in ISO/IEC 7498-1. 4.1 Ack Acknowledge 4.2 AK Ack/Nack Ecma International 2010 14.3 ABR-REQ Aperiodic Burst Request 4.4 ABR-RSP Aperiodic Burst Response 4.5 AS-ACK Association Acknowledge 4.6 AS-REQ Association Request 4.7 AS-RSP Association Response 4.8 Burst Master Burst scheduler 4.9 B
19、urst Slave Burst schedule follower 4.10 BR-REQ Burst Request 4.11 BR-RSP Burst Response 4.12 BS Burst Start 4.13 BWS Burst Window Size 4.14 CHC Control Header CRC 4.15 CRC Cyclic Redundancy Check 4.16 DAS-ACK Disassociation Acknowledge 4.17 DAS-REQ Disassociation Request 2 Ecma International 20104.1
20、8 DAS-RSP Disassociation Response 4.19 DCC-REQ Duty Cycle Change Request 4.20 DCC-RSP Duty Cycle Change Response 4.21 dectet group of 10 bits (cf. octet) 4.22 DER Data Encoding Response 4.23 Disassociatee recipient of a DAS-REQ 4.24 Disassociator initiator of a disassociation 4.25 DQWS Data Quiet Wi
21、ndow Size 4.26 ENC Data Encoding 4.27 FL Frame Length 4.28 fmFrequency of modulation clock that changes the optical output signal 4.29 FT Frame Type 4.30 Initiator initiator of an association 4.31 LEN Length 4.32 MF MAC Flag Ecma International 2010 34.33 MHC MAC Header CRC 4.34 MM Management Message
22、 4.35 Nack Negative Acknowledge 4.36 OOK On-Off Keying 4.37 OP Operation 4.38 PL Payload Length 4.39 PDU Protocol Data Unit ISO/IEC 7498-1 4.40 PSN PDU Sequence Number 4.41 RC Response Code 4.42 Recipient receiver of a frame 4.43 RFU Reserved for Future Use 4.44 RID Recipient ID 4.45 RVF Recipient V
23、F 4.46 SDL Specification and Description Language ITU-T Z.100 4.47 SDU Service Data Unit ISO/IEC 7498-1 4 Ecma International 20104.48 SDVLC Short Distance Visible Light Communication 4.49 Sender sender of a frame 4.50 SI Start Indicator 4.51 SID Sender ID 4.52 SMF Supported Modulation Frequencies 4.
24、53 Target recipient of an AS-REQ 4.54 VF Visible Frame 4.55 VFA VF Mode Stop Approve 4.56 VFR VF Mode Stop Request 4.57 VLC Visible Light Communication 5 Conventions and notations The following conventions and notations apply in this document unless otherwise stated. The setting of bits is denoted b
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