Power quality enhancement using active power filter five-level cascade H-bridge under unbalanced and distorted grid

M. Guergah, K. Nebti, S. Rezgui, H. Benalla, D. Ould-Abdeslam
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Abstract

Introduction. To improve the power quality of a supply system, the total harmonic distortion (THD) is the most important parameter in the quantification of harmonics caused by nonlinear loads. In practice, it must be less than 5 %. The novelty of the proposed work consists in the use of a cascaded five level active filter, when the converter consisting of six H-bridge pairs, each one includes four transistors. Purpose. To increase the efficiency of this filter, two techniques for quantification of harmonic currents are proposed, first the PQ-theory which is simple but can only be used in case of a balanced grid, and second the synchronous reference frame theory (SFR-theory), which is capable of creating harmonic current not only in an unbalanced grid, but also in an unbalanced and distorted beam. Methods. Using the control techniques, the harmonic current is extracted from load current and considered as a reference. The constructed current should follow this reference. Results. The estimation of the active and reactive powers is based on the measurement of the currents crossing the load and the network voltages, these powers are used to determine the shape of the harmonic (reference) current. Using the PI regulator, the output current of the five-level inverter follows the reference current perfectly. The inverters output current is injected into the grid to eliminate harmonic currents. Practical value. In practice, the harmonic distortion rate THD is the most widely used criterion for criticizing the waveform of the currents and judging the quality of the energy involved. For currents on the source side, the THD is considered acceptable if it is less than 5 %, in our proposal the THD is 0.85 % with the PQ-theory and 2.34 % with SFR-theory, so it is optimal.
在电网不平衡和畸变条件下利用有源电力滤波器五级联h桥增强电能质量
介绍。为了改善供电系统的电能质量,总谐波失真(THD)是非线性负载引起的谐波量化中最重要的参数。实际上,它必须小于5%。提出的工作的新颖之处在于使用级联五电平有源滤波器,当转换器由六个h桥对组成时,每个h桥对包括四个晶体管。目的。为了提高该滤波器的效率,提出了两种谐波电流的量化技术,一种是简单的pq理论,但只能在平衡电网中使用;另一种是同步参考框架理论(srr理论),它不仅可以在不平衡电网中产生谐波电流,也可以在不平衡和畸变光束中产生谐波电流。方法。利用控制技术,从负载电流中提取谐波电流作为参考。构造的电流应该遵循这个参考。结果。有功和无功功率的估计是基于通过负载的电流和网络电压的测量,这些功率用来确定谐波(参考)电流的形状。采用PI稳压器,五电平逆变器的输出电流与参考电流完全一致。逆变器输出的电流注入电网以消除谐波电流。实用价值。在实际应用中,谐波失真率THD是评价电流波形和判断所涉能量质量的最广泛使用的标准。对于源侧电流,如果THD小于5%,则认为可以接受,在我们的建议中,pq理论的THD为0.85%,sfr理论的THD为2.34%,因此是最优的。
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