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Coordination control of an AC-to-DC converter and a switched excitation capacitor bank for an autonomous self-excited induction generators in renewable-energy systems

机译:AC-To-DC转换器的协调控制和可再生能源系统中自主自兴诱导发电机的交换激励电容库

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This paper proposes a novel coordination control scheme for effectively controlling an AC-to-DC converter and a switched excitation-capacitor bank of an autonomous self-excited induction generator (SEIG) using a digital signal processor (DSP). The aim of the proposed control scheme is to maintain a fixed DC voltage at the output terminals of the converter under various operating conditions. A three-phase system model is established to simulate the dynamic performance of the studied system. The experimental results based on a laboratory 2.2-kW induction generator driven by a brushless DC motor are also carried out. It can be concluded from the simulated outcomes and experimental results that the proposed coordination control scheme can be applied to various renewable-energy systems based on SEIG to offer an adequate DC voltage under different operating conditions.
机译:本文提出了一种新颖的协调控制方案,用于使用数字信号处理器(DSP)有效地控制AC-TO-DC转换器和自主激发发生器(SEIG)的交换激励电容器组。所提出的控制方案的目的是在各种操作条件下维持转换器的输出端子处的固定直流电压。建立了三相系统模型来模拟研究的动态性能。还执行基于由无刷直流电动机驱动的实验室2.2-kW诱导发电机的实验结果。从模拟结果和实验结果可以得出结论,所提出的协调控制方案可以应用于基于SEIG的各种可再生能量系统,以提供不同的操作条件下的适当直流电压。

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