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Steady-state analysis of Electronic Load Controller for three phase alternator

机译:三相交流发电机电子负载控制器的稳态分析

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The present work is dedicated to the steady-state analysis of electronic load controller (ELC) for three phase alternator. In an alternator employed in micro-hydro applications, the voltage is controlled by Automatic Voltage Controller (AVR) so here electronic load controller conforms itself to the control of frequency. It does so by diverting the difference between the rated power and consumer demand to the dump/ballast load for dissipation. The paper presents the mathematical and simulink model of Electronic Load Controller for three phase alternator. The developed mathematical model is first checked for its stability by employing Routh-Hurwitz criterion and then designed in MATLAB/Simulink which is then analyzed for its behavior under steady-state conditions. The controller is being modeled for proportional, proportional plus integral and proportional plus integral plus derivative control and the results are being compared and discussed.
机译:本工作致力于三相交流发电机电子负载控制器(ELC)的稳态分析。在微水电应用中使用的交流发电机中,电压由自动电压控制器(AVR)控制,因此此处的电子负载控制器符合频率控制的要求。它通过将额定功率和用户需求之间的差异分配给自卸/镇流器负载进行耗散。提出了三相交流发电机电子负载控制器的数学模型和仿真模型。首先使用Routh-Hurwitz准则检查开发的数学模型的稳定性,然后在MATLAB / Simulink中进行设计,然后分析其在稳态条件下的行为。正在对控制器进行比例,比例加积分和比例加积分加微分控制的建模,并对结果进行比较和讨论。

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