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GCDSC-PLL and PAC Based Control of Three-Phase Four-Wire UPQC for Power Quality Improvement

机译:基于GCDSC-PLL和PAC的三相四线UPQC控制,以提高电能质量

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This paper presents amodified p-q theory based unified power quality conditioner (UPQC) connected into a three-phase four-wire (3P4W) distribution system to handle the significant power quality problems viz. voltage and current harmonics, voltage sags and swells, voltage unbalancing, load unbalancing and low power factor due to excessive reactive power demand. A UPQC, which is the consecutive connection of shunt and series active power filters (APFs) combinedly connected to a dc link, is capable of rectifying all the above power quality problems concurrently. The concept of fundamental frequency positive sequence (FFPS) extraction derived from generalized cascaded delayed signal cancellation (GCDSC) technique and p-q theory are integrated in the UPQC control which results into its robust performance under highly undesirable conditions. To lighten the burden of reactive power on shunt APF, reactive power apportion between shunt and series APF is successfully accomplished with the power angle control (PAC)algorithm without hindering the major function of UPQC. The triggering signals for both converters are generated with the help of hysteresis band controller. An elaborated analysis of UPQC performance under dynamic loading condition with linear and non-linear single-phase and three-phaseloads is carried out in the simulation work done on the MATLAB/SIMULINK platform.
机译:本文提出了一种改进的基于p-q理论的统一电源质量调节器(UPQC),该电源质量调节器连接到三相四线(3P4W)配电系统中,以解决重要的电源质量问题。由于过多的无功功率需求,电压和电流谐波,电压骤降和骤升,电压不平衡,负载不平衡以及低功率因数。 UPQC是并联连接到直流链路的并联和串联有源功率滤波器(APF)的连续连接,能够同时纠正上述所有电能质量问题。 UPQC控制中集成了源自广义级联延迟信号消除(GCDSC)技术和p-q理论的基频正序(FFPS)提取概念,这使其在非常不理想的条件下具有强大的性能。为减轻无功功率对并联APF的负担,利用功率角控制(PAC)算法成功地实现了分流和串联APF之间的无功分配,而不会影响UPQC的主要功能。两个转换器的触发信号都是在磁滞带控制器的帮助下生成的。在MATLAB / SIMULINK平台上进行的仿真工作中,对线性和非线性单相和三相负载的动态负载条件下的UPQC性能进行了详尽的分析。

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