首页> 外文会议>2011 Annual IEEE India Conference : Engineering Sustainable Solutions >A novel, empirical equation — Based shunt active filter for harmonic elimination and power factor correction, using a modified PSO algorithm
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A novel, empirical equation — Based shunt active filter for harmonic elimination and power factor correction, using a modified PSO algorithm

机译:一种新颖的经验公式-使用改进的PSO算法的基于并联有源滤波器的谐波消除和功率因数校正

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This paper presents a novel approach for harmonic elimination and power factor correction (PFC) in a single phase AC-DC rectifier system using a shunt Active Power Filter (APF). The DC output of the rectifier is further regulated using a Buck Converter. The active filter topology is based on a single-phase voltage source inverter with four IGBT switches. The proposed approach includes the usage of a modified Particle Swarm Optimization (PSO) algorithm to arrive at optimal values of control parameters for a given load. The parameters thus obtained at different load conditions are used to develop Empirical Equations for the system at hand using MINITAB Quality Tool. These empirical equations can further be used to determine the control parameters suitable for other load conditions also. The control scheme employs a simple strategy which uses a dual-mode methodology which consists of PI controller along with Hysteresis Control technique for power quality improvement. The entire system was simulated using MATLAB software and the corresponding results are discussed in this paper. This approach not only determines the optimal values of control parameters resulting in an improvement over existing techniques in power quality, but also is a simpler control in terms of both firmware algorithm and hardware requirements. Much of the extended calculations that are normally used for the control can be avoided. This makes the design attractive for commercial manufacturers.
机译:本文提出了一种使用分流有源功率滤波器(APF)的单相AC-DC整流器系统中的谐波消除和功率因数校正(PFC)的新颖方法。使用降压转换器进一步调节整流器的直流输出。有源滤波器拓扑基于具有四个IGBT开关的单相电压源逆变器。所提出的方法包括使用改进的粒子群优化(PSO)算法来获得给定负载的控制参数的最佳值。这样,在不同的负载条件下获得的参数将用于使用MINITAB质量工具为手边的系统开发经验公式。这些经验公式还可以用于确定也适用于其他负载条件的控制参数。该控制方案采用了一种简单的策略,该策略使用双模式方法,该方法由PI控制器和磁滞控制技术组成,以提高电能质量。整个系统使用MATLAB软件进行了仿真,并讨论了相应的结果。这种方法不仅确定了控制参数的最佳值,从而导致了对电能质量的现有技术的改进,而且就固件算法和硬件要求而言,也是一种更简单的控制方法。可以避免通常用于控制的许多扩展计算。这使设计对商业制造商具有吸引力。

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