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Application research of optimal strategy for AVC in hydro power station

机译:水电站AVC最优策略的应用研究

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Voltage and reactive power control is r elated to ensuring power quality and system voltage stability, while it has very important significance in reducing power loss and improving economic benefits. Automatic voltage control (AVC) heightens system efficiency and power quality by automatically monitoring and controlling reactive power of generators, transformer taps, capacitors and reactors, which is important to the reactive power and voltage regulation. AVC Sub- station in power plant plays an important role in AVC system. It receives real-time target voltage instruction, compares it to current voltage, calculates the reactive power and allocates it to each unit. This paper analyzes the present status of the voltage regulator and elaborates the need of AVC in hydro power stations. It also discusses the function, mode and the general principle of voltage regulator briefly. The paper presents the principle of reactive power dispatching in hydro power and introduces a better way. It focuses on how to calculate the reactive power and allocate it to each unit in the optimal way, and how to ensure safe and stable operation of AVC Sub-stations.
机译:电压和无功功率控制是升高功率质量和系统电压稳定性的R,而在降低功率损失和提高经济效益方面具有非常重要的意义。通过自动监控和控制发电机,变压器抽头,电容器和电抗器的无功功率,自动电压控制(AVC)提高系统效率和功率质量,这对于无功和电压调节很重要。发电厂的AVC子站在AVC系统中起着重要作用。它接收实时目标电压指令,将其与电流电压进行比较,计算无功功率并将其分配给每个单元。本文分析了电压调节器的现状,并详细说明了水电站中AVC的需求。它还简要讨论了电压调节器的功能,模式和一般原理。本文介绍了水电站反应功率的原理,引入了更好的方式。它专注于如何计算无功功率并以最佳方式分配给每个单元,以及如何确保AVC子站的安全稳定运行。

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