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A New Technique for Estimation of Reactive Power Demand of a Cycloconverter in Distributed Power Generation Schemes Based on High-Speed Engines

机译:一种基于高速发动机的分布式发电方案依循环变频器无功功率需求的新技术

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In the distributed power generation based on high-speed engines, the frequency of the voltage generated by the high-speed generator (in the order of thousands of Hz) is much higher than that of the grid (50 or 60 Hz). As a result, a static frequency changer is required for frequency matching as well as output power control. In this paper, a new method for the estimation of the reactive power demand of a naturally commutated cycloconverter (NCC) in a distributed power generation scheme based on high-speed engines has been proposed. As NCC is made up of phase-controlled thyristor converter blocks, it draws reactive power irrespective of the mode of operation (rectifier or inverter) and loading condition. The reactive power demand of the cycloconverter varies with the power delivered to the grid. It is important to compensate dynamically for the reactive power drawn by the NCC using a local static Var compensator. In this paper, the reactive power demand of an NCC has been estimated for a range of output power levels, using the proposed method. The analytical results have been verified using the simulation results obtained from PSCAD/EMTDC simulation package.
机译:在基于高速发动机的分布式发电中,高速发生器产生的电压频率远高于网格(50或60Hz)的电压的频率。结果,频率匹配以及输出功率控制需要静态变频器。本文提出了一种新方法,用于估计基于高速发动机的分布式发电方案中的自然换向循环变频器(NCC)的无功功率需求。由于NCC由相控晶闸管转换器块组成,它不管操作模式(整流器或逆变器)和负载条件如何汲取无功功率。环形变频器的无功功率需求随着输送到网格的功率而变化。重要的是使用本地静态VAR补偿器可动态补偿NCC绘制的无功功率。本文使用所提出的方法,估计了一系列输出功率水平的NCC的无功功率需求。使用从PSCAD / EMTDC仿真包获得的仿真结果验证了分析结果。

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