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Development of a Small-Scale Generator Set Model for Local Network Voltage and Frequency Stability Analysis

机译:用于局域网电压和频率稳定性分析的小型发电机组模型的开发

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The integration of numerous small-scale generators into existing local networks (e.g., a microgrid) is anticipated to impact their operation, control, and protection. In particular, maintaining voltage and frequency stability within the defined limits is more onerous and requires investigation. The effect of protective limiters and characteristics such as the genuine inertia of the generation set must be taken into consideration in stability studies in order to accurately represent the overall dynamic characteristics of local distributed generators. This paper focuses on three fundamental aspects: 1) the development of a reciprocating engine/generator set model; 2) the laboratory testing of an experimental test rig; and 3) the influence of a volts-per-hertz ratio (volts-per-hertz ratio) limiter on the generator dynamic response. The experimental procedures used to determine the genuine inertia of the test rig are described and the system responses under different scenarios are used to validate the developed model. This emphasizes the significance of excitation protective limiters such as volts-per-hertz ratio, during the stability analysis.
机译:预计将许多小型发电机集成到现有的本地网络(例如微电网)中会影响其运行,控制和保护。特别地,将电压和频率稳定性维持在所定义的极限内更加麻烦并且需要进行研究。在稳定性研究中,必须考虑保护性限制器的影响和特性(例如发电机组的真正惯性),以便准确表示局部分布式发电机的总体动态特性。本文着重于三个基本方面:1)往复式发动机/发电机组模型的开发; 2)实验台架的实验室测试; 3)伏/赫兹比(伏/赫兹比)限制器对发电机动态响应的影响。描述了用于确定试验台的真实惯性的实验程序,并使用了在不同情况下的系统响应来验证开发的模型。这强调了在稳定性分析过程中激励保护性限制器(例如伏特/赫兹比)的重要性。

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