EN ISO 6551-1995 en Petroleum Liquids and Gases - Fidelity and Security of Dynamic Measurement - Cabled Transmission of Electric and or Electronic Pulsed Data《石油液体和气体 动态测量的精度和可靠性 电.pdf
《EN ISO 6551-1995 en Petroleum Liquids and Gases - Fidelity and Security of Dynamic Measurement - Cabled Transmission of Electric and or Electronic Pulsed Data《石油液体和气体 动态测量的精度和可靠性 电.pdf》由会员分享,可在线阅读,更多相关《EN ISO 6551-1995 en Petroleum Liquids and Gases - Fidelity and Security of Dynamic Measurement - Cabled Transmission of Electric and or Electronic Pulsed Data《石油液体和气体 动态测量的精度和可靠性 电.pdf(25页珍藏版)》请在麦多课文档分享上搜索。
1、 CEN EN*IS0*655L 95 3404589 Ol120398 TT m A BRITISH STANDARD Petroleum liquids and gases - Fidelity and security of dynamic measurement - Cabled transmission of electric and/or electronic pulsed data The European Standard EN Is0 551 : 1995 has the status of a British standard ICs 76.200 .I_._-/ .,.
2、. II.- .- . . . ._. - . _. . BS EN IS0 6551 : 1996 Incolporati?lg Amendment No. 1 BS6439:IWrenumered - CEN EN*ISO*b55L 95 3404587 0120399 906 Issue 2, March 1996 A BS EN IS0 6551 : 1996 Contents National foreword Committees responsible Rearmmendations O. Introduction 1. Scope and field of applicatio
3、n 2. Definitions 3. Levels of security 4. System design Level E pulse security system; Levei D pulse security system; Level C pulse security system; Level B pulse security system; Levei A Page CEN EN*ISO*b55L 95 3404589 OL20400 458 A A Issue 1, March 1996 BS EN IS0 6551 : 1996 Summary of pages The f
4、ollowing table identifies the current issue of each page. Issue 1 indicates that a page has been introduced for the first time by amendment. Subsequent issue numbers indicate an updated page. Vertical sidelining on replacement pages indicates the most recent changes (amendment, addition, deletion).
5、Front cover inside front cover a b EN cover page iib 1 2 3 4 Issue 2 2 1 blank 1 1 Originai Original Originai Originai 5 6 7 8 9 10 11 12 hide back cover Back cover Issue Original Original Onginai Original original Originai Original Original blank 2 Change of identifier Wherever BS 6439 : 1983 appea
6、rs in this standard, it should be read as BS EN IS0 6551 : 1996. A ExJRoPEANwANDm EN IS0 6551 NOIWIE EUR0PEE?E EUROP it may or may not be resettable to zero (see 4.4). 2.2.4 noise : Unwanted signals which may impair fidelity, and which occur for periods exceeding 0.2 s. 2.2.5 primary indication : Th
7、e combination of the transducer(s) outputs), the transmission cabling, the signal conditioning, processing and scaling, and the indicator with or without totalizer and their readings, the whole of which pro- duces the final reference for the transaction. 2.2.6 secondary indication (auxiliary or anci
8、llary indica- tion) : Any equipment which separately or in combination pro- vides indication of the quantity measured, but which does not form part of the primary indication. 2.2.7 security : The state or means of ensuring fidelity. The degree or level of security given by a minimum basic arrange- m
9、ent, can be increased by additional equipment. 2.2.8 transients : Disturbances having a duration of 0.2 s or leCs. 2.2.9 pulse transmitter : A device for converting the output from a transducer into a pulsed signal of low source impedance over the full operating frequency range (with pre-amplificati
10、on if necessary). 2.2.10 unrevealed error : Any lack of fidelity outside the prescribed limits of error, including errors caused by functional failure and by externa influences. 3 Levels of security 3.1 Designation of security levels In this International Standard, five levels of security are iden-
11、tified and designated, of which leve/ represents the minimum acceptable level. Typical examples of these five levels are shown diagrammatically in figures 1 to 5, and are described below. 3.1.1 Level E Error reduction is achieved solely by correctly installed ap- paratus of good quality. This is a s
12、traightforward scaler totalizer system. 3.1.2 Level D Manua/ error monitoring at, specified intervals by methods of comparison. This level of security is intended to give protection against functional errors and failures and is a method of verification by manual action. It has the means for checking
13、 the read-out visually against an independent totalizing system. 3.1.3 Level C Automatic error monitoring and error indication at specified in- tervals by methods of comparison. 2 CEN EN*ISO*b553 95 3404589 0320405 T3T Module Pulse tramminer Signai conditioner This level of security is intended to g
14、ive protection against functional errors and failures and this may be achieved by design methods acceptable to an approving authority (if ap- propriate). The time intervals for error monitoring are subject to revision in the light of experience gained. .-c Scder .-c Totauer 3.1.4 Level 6 Continuous
15、monitoring, error indication and alarm signalling by methods of comparison. This level of security is intended to give warning of transients and other spurious influences, supply borne and radiated, in addition to functional errors and failures. 3.1.5 Level A Continuous verification and correction b
16、y methods of comparison. Errors must be signalled even though they are corrected. This level of security is intended to give protection against tran- sients and other spurious influences, supply borne and radiated, in addition to functional errors and failures. -BS 6439 : 1983 For this level of secu
17、rity, alternative transmission lines follow- ing two different routes should be provided, together with bat- teries for back-up power supply. 3.2 General note on security levels 3.2.1 A metering system may comprise sections having the same or different levels of security. figures 1 to 5 show typical
18、 functional arrangements of modules required to achieve the specified levels of security. 3.2.2 In the examples, emphasis has been placed on the transmission system as this is considered to be the most vulnerable area of the whole. 3.2.3 Security for the scaler totalizer is not illustrated and is co
19、nsidered to be acceptable to Levei for the majority of ap- plications. It may, however, be considered necessary in some cir- cumstances to duplicate the scaler and/or the totalizer section. 3.2.4 The factors contributing to the integrity of the functions are considered in clauses 4 to 8. messure- im
20、pedance signai over fun operating frequency range Isee 6.1 and 6.2) frequency raw limiting. pub shap- ing. co(MywI mode inberference rejection r- - 1 counts to readout units Function I II Quantin, readout Figure 1 - Typical functional arrangement for pulse security system Level E. The diagram illust
21、rates a simple system with no built-in provisions for error monitoring. Only good quality components and sub-units, correctly installed, will lead to confidence in the security of the system. The use of a pre-amplifier transmitter to drive the transmission line is con- sidered beneficial for the maj
22、ority of applications, a5 is the provision of signal conditioning. The system, though simple, does not differ in hardware quality from more secure systems using the same elements. (Note that the modules and functions shown in full are essential. Those shown dotted are optional.) 3 BS 6439 : 1983 Sig
23、nal conditioner Row transducer II il Puise transmitter CEN EN*IS0*6553 75 = 3404589 O320406 976 c Scaler Totalizer Transmuuion 1-1 line I II r- Mmule Secondary readout lpemnen: or temporary. local or I remote) FlW measure mt Function Manual comparison with primary readout r-l at specified interva(s
24、impedance signais over fu operating frequency range 1 I- I I i Preampiir I I L - I Transmis- sion of. signai (see 6.1 and 6.2) L Amplification end frequency range limiting. pulse shap- ing, common mode interference rejection Conversion of pu198 counts to readout units U readout Figure 2 - Typical fu
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