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Feasibility Analysis of a 12 Pulse Thyristor Based HVDC Transmission System with Synchronous Machine

机译:基于十二脉冲晶闸管的同步电机高压直流输电系统的可行性分析

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High Voltage Direct Current (HVDC) is a technology associated with power electronics based on semiconductor devices which can be very useful and cost efficient compared to HVAC for long distance transmission. In this paper, a simple 12 pulse HVDC transmission system model has been developed which consists of converter and filter to improve the stability of power transmission. This paper presents the simulation result of a 12 pulse HVDC model to analyze the power, voltage and current profile with a synchronous machine as a generator. It has been found that the rectifier faces some trouble to convert the whole amount of power generated by the machine from AC to DC at a time and the system becomes unstable. A method has been studied to eliminate this phenomenon and to sustain stability to provide a steady state power supply to the rectifier. That was done by connecting several loads parallel with the synchronous machine to consume the excess power and the simulation profile of power, voltage and current were found steady state after some time interval.
机译:高压直流(HVDC)是与基于半导体器件的电力电子设备相关的技术,与用于长距离传输的HVAC相比,该技术非常有用且具有成本效益。本文建立了一个简单的12脉冲HVDC输电系统模型,该模型由转换器和滤波器组成,以提高输电的稳定性。本文介绍了一个12脉冲HVDC模型的仿真结果,以同步电机作为发电机来分析功率,电压和电流曲线。已经发现,整流器在一次将由机器产生的全部电力从交流转换为直流时面临一些麻烦,并且系统变得不稳定。已经研究了消除该现象并维持稳定性以向整流器提供稳态电源的方法。这是通过将多个负载与同步电机并联连接以消耗多余的功率来完成的,在一段时间后发现功率,电压和电流的仿真曲线处于稳定状态。

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