IEEE 1303-2011 en Guide for Static Var Compensator Field Tests《静态变量补偿器现场测试指南》.pdf
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1、 IEEE Std 90003-2008 IEEE Std 90003-2008 IEEE Guide for Static VarCompensator Field Tests Sponsored by the Substations Committee IEEE 3 Park Avenue New York, NY 10016-5997 USA 26 August 2011 IEEE Power +1 978 750 8400. Permission to photocopy portions of any individual standard for educational class
2、room use can also be obtained through the Copyright Clearance Center. Introduction This introduction is not part of IEEE Std 1303-2011, IEEE Guide for Static Var Compensator Field Tests. This guide was prepared by a Task Force of Working Group I4, Static Var Compensators, of the Power Electronic Sta
3、tions Subcommittee of the Substations Committee of the IEEE Power deciding how, when, and where the system and its components will be tested; and determining the test equipment that is needed. thyristor-controlled reactor: A series connection thyristor controller, typically connected between two hal
4、ves of a reactor, that forms one leg of the connected circuit. The thyristor controller consists of antiparallel phase angle controlled thyristors for vernier control of the reactor susceptance (current). thyristor-switched capacitor: A series connection of a thyristor switch, typically connected be
5、tween a capacitor bank and a current limiting reactor, that forms one leg of the connected circuit. The thyristor switch consists of antiparallel thyristors that are blocked or fired for full conduction (on/off control). thyristor-switched reactor: A series connection of a thyristor switch, typicall
6、y connected between two halves of a reactor, that forms one leg of the connected circuit. The thyristor switch consists of antiparallel thyristors that are blocked or fired for full conduction (on/off control). transient network analyzer: An analog or digital test circuit representing a scaled-down
7、version of the pertinent power circuit components, used mainly for control response and performance testing. transient fault recorder: A device, similar to a digital fault recorder or digital transient recorder, for recording transient quantities. trial operation: A period during which the equipment
8、 or system is placed under service conditions and is also monitored for stable, smooth, and reliable performance. trigger pulse converter: A device in the control system that converts the control signal to a signal that can be transmitted to the thyristor valve. valve base electronics: Electronic ci
9、rcuitry that directs gate pulses into the thyristor valve. valve electronics: Electronic circuitry associated with the thyristors and mounted at thyristor level potential. 3.2 Acronyms DFR digital fault recorder DTR digital transient recorder ITP inspection and test plan MSC mechanically switched ca
10、pacitor RTDS real time digital simulator SER sequence of events recorder TCR thyristor-controlled reactor TFR transient fault recorder TNA transient network analyzer TPC trigger pulse converter TSC thyristor-switched capacitor TSR thyristor-switched reactor VBE valve base electronics VE valve electr
11、onics 4 Copyright 2011 IEEE. All rights reserved. IEEE Std 1303-2011 IEEE Guide for Static Var Compensator Field Tests 4. Preparation of a field test program The purpose of this clause is to describe how a comprehensive field test program can be applied to SVC systems. In general, every SVC has been
12、 designed and installed for a specific reason and purpose. This reasoning and purpose should be clearly defined for the test program and understood by the participants. A specific set of inspection and test plans (ITPs) should be prepared for each SVC project. In the field, these ITPs will demonstra
13、te that the specific purposes of that SVC are being met in accordance with the performance specifications. 4.1 Test program phases A comprehensive field test program includes the following major phases: a) Overall test planning and organization, including the definition and line of authority for per
14、forming the tests. b) Survey of documents and data, including contract, system study, factory test review, drawings, users manual availability, and definition of ac system requirements or limitations. c) Preparation of ITPs for equipment, subsystem, commissioning, and acceptance tests of the SVC sys
15、tem. d) Review and approval of, or concurrence with, test program by user. e) Preparation of schedule, including coordination of installation/test schedule and coordination with system operation. f) Dissemination and approval of field test results. g) Dissemination of information, including as-built
16、 drawings. Only phase c), the preparation of ITPs for SVC pre-commissioning, commissioning, and acceptance tests, is discussed in this guide. 4.2 Inspection and test plans (ITPs) It is suggested that a format be adopted that breaks down the overall test program into a series of single purpose ITPs.
17、5 Copyright 2011 IEEE. All rights reserved. IEEE Std 1303-2011 IEEE Guide for Static Var Compensator Field Tests 4.2.1 Contents of the ITP The ITP should contain at least the following information: a) Descriptive title and test number. The title should convey the purpose of the test, equipment, and
18、subsystem or system being tested. b) Person (by title) responsible for directing the test and the person with whom the performance of the test is to be coordinated. c) List of preceding tests that should have been completed before this test can be attempted. d) Estimate of time required to complete
19、the test. e) System configuration prior to the test. This could be in the form of a single-line diagram at the beginning of the test, a table of switch or breaker positions, or other format that describes the pretest configuration. f) Step-by-step description of the test execution, along with the ex
20、pected results of each step including reactive power swings. g) Description of the expected final results. h) Summary of the records required to document successful completion of the test. i) Identification and description of relevant reference information, such as industry standards, particular req
21、uirements from the specifications, or potential impact on the utility. j) Test equipment used, including type, serial number, calibration, etc. k) Test sheets with measured data (suitable for future fault diagnosis). A sample ITP is provided in Figure 1. This ITP is for example purposes only, and sh
22、ould be modified to fit the circumstances of the specific project and organization. 6 Copyright 2011 IEEE. All rights reserved. IEEE Std 1303-2011 IEEE Guide for Static Var Compensator Field Tests Figure 1 Sample inspection and test plan 7 Copyright 2011 IEEE. All rights reserved. IEEE Std 1303-2011
23、 IEEE Guide for Static Var Compensator Field Tests 4.2.2 Field test categories covered by the ITP The field testing of an SVC project should consist of a series of tests documented by individual ITPs, beginning with inspection, installation checks, and mechanical tests of the equipment and progressi
24、ng through electrical and functional test of equipment, subsystems, and the complete SVC system in accordance with approved drawings, instructions, and users manual. In general, ITPs should be created to cover the following field test categories: a) Equipment tests b) Sub-system tests c) Commissioni
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