EN 60870-5-1-1993 en Telecontrol Equipment and Systems Part 5 Transmission Protocols Section One Transmission Frame Formats《遥控设备和系统 第5部分 传输协议 第1节 传输帧格式(IEC 870-5-1-1990)》.pdf
《EN 60870-5-1-1993 en Telecontrol Equipment and Systems Part 5 Transmission Protocols Section One Transmission Frame Formats《遥控设备和系统 第5部分 传输协议 第1节 传输帧格式(IEC 870-5-1-1990)》.pdf》由会员分享,可在线阅读,更多相关《EN 60870-5-1-1993 en Telecontrol Equipment and Systems Part 5 Transmission Protocols Section One Transmission Frame Formats《遥控设备和系统 第5部分 传输协议 第1节 传输帧格式(IEC 870-5-1-1990)》.pdf(39页珍藏版)》请在麦多课文档分享上搜索。
1、= 3404583 OLOO12L L4T W A EUROPEAN STmARD NORNE EUR0PEE?NE EuRopAIscHE NORM EN 602370-5-1 September 1993 UDC 621.398 : 621.316.1 : 681.3.04 Descriptors: Telecontrol, data transmission, open system interconnection, protocol, data stmcture, frame, format English version Telecontrol equipment and syste
2、ms Part 5: ?Ik.ansmission protocols Section One: ?k.ansmission ke formats (IEC 870-5-1 : 1990) Matriels et systmes de tlconduite Partie 5: Protocoles de transmission Section un: Formats de trames de transmission Fernwirkeinrichtungen und Fernwirksysteme Teil 5: bertragungsprotokolle Hauptabschnitt e
3、ins: Telegrammformate (CE1 870-51 : 1990) (IEC 870-51 : 1990) This European Standard was approved by CENELEC on 1993-07-06. CENELEC members are bound to comply with the CENKENELEC Internal Regulations which stipulate the conditions for giving this European Standard the status of a national standard
4、without any alteration. Up-todate lists and bibliographicd references concerning such national standards may be obtained on application to the Central Secretariat or to any CENELEC member. This European Standard exists in three official versions (Enghsh, French, German). A version in any other langu
5、age made by translation under the responsibility of a CENELEC member into its own language and notified to the Central Secretariat has the same status as the official versions. CENELEC memberc are the national electrotechnicd committees of Austria, Belgium, Denmark, Finland, Fmnce, Germany, Greece,
6、Iceland, Ireland, Italy, Luxembourg, Netherlands, Norway, Portugal, Spain, Sweden, Switzerland and United Kingdom. CENELEC European Committee for Electrotechnical Standardization Comit Europen de Normalisation Electrotechnique Europisches Komitee fr Elektrotechnische Normung Central Secretariat: rue
7、 de Stassart 35, B-1050 Brussels O 1993 Copyright reserved to CENELEC members Ref. No. EN 60870-5-1 : 1993 E A Page 2 EN 60870-5-1 : 1993 Foreword The CENELEC questionnaire procedure, performed for nding out whether or not the international Standard IEC 870-51 : 1990 could be accepted without textua
8、l changes, has shown that no common modincations were necessary for the acceptance as European Standard. The reference document was submitted to the CENELEC members for formal vote and was approved by CENELEC as EN 60870-5-1 on 6 July 1993. The following dates were fixed - latest date of publication
9、 of an identical national standard (dop) 1994-0801 - latest date of withdrawal of conflicting national standards (dow) 1994-0801 Annexes designated normative are part of the body of the standard. In this standard, annex ZA is normative. TELECONTROL EQUIPMENT AND SYSTEMS Part 5: Transmission protocol
10、s Section One - Transmission frame formats INTRODUCTION This section highlights specific requirements and conditions for data transmission in telecontrol systems and shows ways to meet those require- ments. Existing standards for data transmission protocols are adopted where they fulfil the specific
11、 telecontrol requirements. In terms of the OS1 (Open System Interconnection) reference model of ISO-CCITT, which subdivides communication into seven layers, this spe- cifies standards for the two lowest layers, namely the physical layer and the link layer. In particular the document specifies format
12、s for bit serial frame transmission which comply with specified classes of data integrity. Publication 870-5-2: Section Two: Transmission Procedures (in pre- paration) will specify further standards for the link layer and for higher layers. This comprises dispositions for data contents within frames
13、, i .e. services in various traffic modes and for various link - and network configurations. The ultimate purpose of the communication function in process monitoring and control is to achieve maximum system consistency, .e. there should be no discrepancies between the physical states of process vari
14、ables and their image in the data base of the telecontrol system. This ultimate goal cannot be achieved completely. The laws of causality dictate that the information about process states is delayed and environmental noise or component failures may falsify the information. All that can be expected i
15、s that the communication allows a high degree of system consistency to be maintained. For this reason the data transmission method shall support upgraded reliable and efficient information throughput in particular for short and urgent messages. The exploitation of the installed bandwidth with respec
16、t to these two qualities is the critical measure for telecontrol protocols, because the available bandwidths are limited. In an imperfect environment, however, high data integrity and efficient data transmission are conflicting properties: increasing demands for data integrity can be fulfilled at th
17、e expense of decreasing net speed of inform- ation flow. It is necessary, therefore, to find an acceptable compromise between these two properties, based on an analysis of the requirements. A pre-supposition for analytical treatment is the objective measurement of the required properties. _ m 340458
18、3 OLOO124 959 m 870-5-1 0 IEC Data transport is only one function of the total system. The speed and integrity requirements of data transmission shall be chosen to be consistent with the accuracy of the total system, .e. all the system parameters should be matched. In addition to the required compro
19、mise between trans- mission speed and transmission integrity there are further conditions which influence the choice of an appropriate telecontrol protocol, as shown in the following diagram : Fonctionai requirements Required response Required Required Required da ta availability accu racy integrity
20、 time Telecontrol pro toco1 definitions Network configuration Network characteristics / Plant conditions Geographical situation Ba ndwi d t h (transmission speed) Bit error rate Kinds of information transfers Number of messages (system size) One-way/two-way data traffic (supervisory/super- visory an
21、d control system Y Kecommended protocol m 3404583 0100125 895 m 870-5-1 O IEC 1. Scope This series of standards applies to telecontrol equipment and systems with coded bit serial data transmission for monitoring and controlling geographically widespread processes. This standard covers asynchro- nous
22、 data transmission with half duplex and duplex link protocols operating with window size one for message transfers. 2. Object This section specifies the basic requirements for services to be provided by the link plus physical layers, for telecontrol applications. In particular it specifies standards
23、 on coding, formating and synchro- nizing data frames of variable and fixed lengths which meet specified data integrity requirements. The specified block codes are suited for the transmission of bit serial frames over binary symmetric transmission channels using a memoryless bit encoding method. Thi
24、s means that the signal speci- fication of each transmitted bit shall not depend on signals transmitted before that bit. Note.- Recommendations for data transmission services using other than memoryless bit encoding methods (for example digital pulse duration modulation (DPDM), HDLC, etc.) and duple
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