Operation of a Distributed Generation Plant in a Power Supply System with Non-linear and Asymmetric Load

Yu. N. Bulatov, A. Kryukov, K. Suslov
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引用次数: 2

Abstract

This paper presents the results of research on the influence of asymmetric and nonlinear load on the operating mode of a low-power turbine generator, which simulation takes into account automatic excitation and rotor speed controllers. The results of computer and physical modeling show the occurrence of the following negative effects: a noticeable negative-sequence current appears; the generator begins to generate higher harmonics into the network; the amplitude of the forced oscillations of the excitation current increases; additional mechanical vibrations of the rotor arise, which can lead to the accelerated wear and loss of stability. To ensure the operation of low-power generators with asymmetry and harmonic distortions, it is necessary to limit their load. As a criterion, the maximum current difference in the phases can be used, which should not exceed 12% of the rated current. In addition, it is required to use special means to protect generators: DC links; harmonic filters; negative-sequence protection of generators; automatics for limiting the excitation current.
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非线性非对称负荷供电系统中分布式发电机组的运行
本文研究了不对称和非线性负载对小功率汽轮发电机运行模式的影响,并对自动励磁和转子转速控制器进行了仿真。计算机模拟和物理模拟的结果表明:出现了明显的负序电流;发电机开始产生更高的谐波进入网络;激励电流的强迫振荡幅度增大;转子产生额外的机械振动,这可能导致加速磨损和失去稳定性。为保证具有不对称和谐波畸变的小功率发电机的正常运行,有必要对其进行负荷限制。可采用相间最大电流差作为判据,其不应超过额定电流的12%。此外,还要求采用特殊手段保护发电机:直流链路;谐波滤波器;发电机负序保护;限制励磁电流的自动装置。
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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