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Microcontroller-based strategy for reactive power control and distortion compensation

机译:基于微控制器的无功功率控制和失真补偿策略

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Compensation of the fundamental displacement and harmonic distortion currents drawn by nonlinear loads can be achieved by using a three-phase voltage-source inverter to generate an appropriate correction voltage. The real time feedback control scheme of the inverter presented in the paper is a full three-phase switching strategy based on a 'periodic integral' version of the error sawtooth pulse-width modulation technique. The switching commands for the transistors within the inverter are generated by a 16-bit single-chip microcontroller. This device has sufficient computational power to implement all aspects of the controller tasks as well as handling the man/machine interface. The output waveform of the compensator is precisely determined by theoretically perfect tracking of the periodic reference signal to cancel the harmonic components up to the synthetised switching frequency (2.7 kHz). The value of the proposed algorithm is experimentally verified on a 5.5 kVA inverter circuit and is found to give very fast and precise compensation characteristics. Details are given for operation of the experimental system as well as the control algorithm implementation. Harmonic analysis of the voltage on the test system demonstrates the effectiveness of the developed control strategy for the compensator.
机译:通过使用三相电压源逆变器生成适当的校正电压,可以补偿非线性负载产生的基本位移和谐波失真电流。本文提出的逆变器实时反馈控制方案是基于误差锯齿脉宽调制技术的“周期积分”版本的完整三相开关策略。逆变器内晶体管的开关命令由一个16位单片机产生。该设备具有足够的计算能力,可以执行控制器任务的所有方面以及处理人机界面。补偿器的输出波形可通过理论上完美跟踪周期性参考信号来精确消除,以消除直到合成开关频率(2.7 kHz)的谐波分量。在5.5 kVA逆变器电路上通过实验验证了该算法的价值,发现该算法具有非常快速和精确的补偿特性。详细介绍了实验系统的操作以及控制算法的实现。对测试系统上的电压进行谐波分析,证明了所开发补偿器控制策略的有效性。

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