A large-change sensitivity based approach for distributed harmonic resonance assessment in multi-area interconnected power systems

S. M. Mazhari, A. Sahami, S. Kouhsari
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Abstract

This paper presents a distributed simulation based method for harmonic resonance assessment (HRA) in multi-area large-scale power systems. Further consideration is devoted to the early harmonic frequency-scan formulation to shape them into a Bordered Blocked Diagonal Form (BBDF), which is suitable for parallel processing. The proposed algorithm (BBDF) allows operator of each area of an interconnected system to independently conduct the HRA. A large-change sensitivity based approach is then handled in a secure platform to apply the effects of whole network to each single area. The introduced decentralized HRA is capable to find the exact values as those of the interconnected system through TCP/IP communication media. The developed method is successfully implemented in an existing software package and applied to IEEE 14-bus harmonic test system, followed by a discussion on results.
基于大变化灵敏度的多区域互联电力系统分布式谐波谐振评估方法
提出了一种基于分布式仿真的多区域大型电力系统谐波共振评估方法。进一步考虑早期谐波频率扫描公式,将其形成适合并行处理的有边界阻塞对角形式(BBDF)。提出的算法(BBDF)允许互连系统的每个区域的运营商独立进行HRA。然后在一个安全的平台上处理基于大变化灵敏度的方法,将整个网络的影响应用到每个单独的区域。引入的去中心化HRA能够通过TCP/IP通信媒体找到与互联系统相同的精确值。在现有的软件包中成功地实现了该方法,并将其应用于IEEE 14总线谐波测试系统,并对结果进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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