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法国电网电能质量承诺和电能质量评估
引用本文:杨显军.法国电网电能质量承诺和电能质量评估[J].南方电网技术,2009,3(3):7-14.
作者姓名:杨显军
作者单位:法国电力公司研究与开发部,92141,卡拉马特,法国
摘    要:介绍法国电网的电能质量承诺,包括输电运营商(TSO)的质量承诺和配电运营商(DSO)的质量承诺。TSO和DS0在作出电能质量承诺的同时,还利用入网规则以协议的方式来考虑和限制每个客户的负荷和分布式电源对电能质量的影响。这些协议的实施表明,只有遵守承诺,加上电网运营商与用户双方共同作出努力,才能获得全面良好的电能质量。对于电网干扰评估,建议使用基波潮流计算与多相谐波注入相结合的方法。这个方法利用很短的计算时间就能对非线性负荷建模情形给出可接受的结果。所提议的频域方法的要点在于,将每个谐波源逐一地同时作为扰动源和受扰者来考察,以便计及扰动源之间的相互作用。研发了一个即插即用的HVDC组件并将其用在文章最后部分实例研究中。

关 键 词:电能质量承诺  频域建模  谐波  电力电子设备  高压直流输电
收稿时间:2009/2/28 0:00:00

Grid Power Quality Commitments and Grid Power Quality Assessment in France
YANG Xian-jun.Grid Power Quality Commitments and Grid Power Quality Assessment in France[J].Southern Power System Technology,2009,3(3):7-14.
Authors:YANG Xian-jun
Affiliation:R&D, Electricité de France, 92141 Clamart, France
Abstract:Grid Power Quality Commitments in France are introduced, including the Power Quality Commitments of Transmission System Operator (TSO) and the Power Quality Commitments of Distribution System Operator (DSO). Undertaking the commitments, TSO and DSO are using connection rules to take into account and minimize the impact on power quality of each customer (load or distributed generation) in the way of contracts. The practice of these contracts shows that a good overall power quality can only be achieved by respecting commitments and doing effort from both of grid and customer sides. For grid disturbance assessment, it is suggested to use multi-phase harmonic injection method with fundamental power flow. This method can give an acceptable results with very short computing time for non-linear load modelling. The key point of proposed frequency domain method is that each harmonic source is individually considered as both disturbance source and disturbance receiver in order to take into account interactions between sources. A plug & play HVDC component has been developed and used in one of two case-studies in the end of this article.
Keywords:power quality commitment  frequency domain modelling  harmonic  power electronic device  HVDC
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