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A Novel, DSP Based Algorithm for Optimizing the Harmonics and Reactive Power Under Non-Sinusoidal Supply Voltage Conditions

机译:一种基于DSP的新颖算法,可在非正弦电源电压条件下优化谐波和无功功率

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摘要

This paper presents a simple control algorithm for a shunt active filter for compensation of harmonics and reactive power under nonsinusoidal supply voltage conditions. Under non-sinusoidal supply conditions, any attempt to achieve unity power factor results in a nonsinusoidal current, which increases the total harmonic distortion (THD). On the other hand, attempt at getting harmonic free current may not yield unity power factor because of the harmonics present in the voltage waveform. The proposed algorithm optimizes this trade-off using the Lagrange multiplier technique and achieves the best compromise. It does not employ the normally used p-q theory and is applicable to both single phase and three phase systems. With the proposed technique, it is possible to obtain an optimized power factor satisfying the specified THD limit. The algorithm has been tested under various supply and load conditions using MATLAB simulations and validated with an experimental prototype based on DSP TMS320LF2407A.
机译:本文提出了一种简单的并联有源滤波器控制算法,用于在非正弦电源电压条件下补偿谐波和无功功率。在非正弦电源条件下,任何试图达到单位功率因数的尝试都会导致非正弦电流,这会增加总谐波失真(THD)。另一方面,由于电压波形中存在谐波,尝试获取谐波自由电流可能不会产生单位功率因数。所提出的算法使用拉格朗日乘数技术优化了这种折衷,并取得了最佳折衷。它不采用通常使用的p-q理论,并且适用于单相和三相系统。利用所提出的技术,可以获得满足指定的THD极限的优化功率因数。该算法已使用MATLAB仿真在各种供电和负载条件下进行了测试,并已基于基于DSP TMS320LF2407A的实验原型进行了验证。

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