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Experimental Investigation on a Hybrid Series Active Power Compensator to Improve Power Quality of Typical Households

机译:混合型串联有功功率补偿器改善典型家庭电能质量的实验研究

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In this paper, a transformerless hybrid series active filter using a sliding-mode control algorithm and a notch harmonic detection technique are implemented on a single-phase distribution feeder. This method provides compensation for source current harmonics coming from a voltage fed type of nonlinear load (VSC) and reactive power regulation of a residential consumer. The realized active power filter enhances the power quality while cleaning the point of common coupling (PCC) from possible voltage distortions, sags, and swells initiated through the grid. Furthermore, to overcome drawbacks of real-time control delay, a computational delay compensation method, which accurately generates reference voltages, is proposed. Based on an improved compensation strategy, while the grid current remains clean even with a small compensation gain, voltage disturbances initiated by the power system are obstructed by the compensator, and the PCC became free of voltage harmonics and protected from sag and swell. Simulation and experimental results carried on a 1.6-kVA prototype are presented and discussed.
机译:本文在单相配电馈线上实现了采用滑模控制算法和陷波谐波检测技术的无变压器混合串联有源滤波器。此方法可补偿来自电压馈送类型的非线性负载(VSC)的源电流谐波和居民用户的无功功率调节。所实现的有源功率滤波器可提高电源质量,同时清除公共耦合点(PCC)免受可能通过电网引发的电压畸变,骤降和骤升的影响。此外,为了克服实时控制延迟的缺点,提出了一种精确产生参考电压的计算延迟补偿方法。基于改进的补偿策略,尽管即使以很小的补偿增益电网电流仍保持干净,但补偿器可阻止电力系统引发的电压干扰,并且PCC不受电压谐波的影响,并且可以防止电压骤降和骤升。介绍并讨论了在1.6 kVA原型上进行的仿真和实验结果。

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