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Power Angle Control Scheme for Integration of UPQC in Grid Connected PV System

机译:并网光伏系统中UPQC集成的功率角控制方案

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摘要

The quality of electric power is greatly affected by the proliferation of non-linear loads in electrical energy processing applications like switched mode power supplies, electric motor drives, battery chargers, etc., The custom power devices like UPQC has gained more importance in power quality arena as it gives the best solution for all power quality issues. UPQC is the combination of both shunt and series active power filters connected through a common DC link capacitor. The shunt active power filter is the most corrective measure to remove the current related problems, power factor improvement by supplying reactive power and regulates DC link voltage. The series APF acts as controlled voltage source and corrects voltage related problems, like sag or swell, flickering, harmonics, etc.,. As a combination of both of these, UPQC improves service reliability. In the present work, shunt inverter control is based on modified active- reactive (p-q) power theory, uses High selectivity filter (HSF) for reference current generation. The series APF uses Power Angle Control (PAC) scheme for compensating sag/swell, interruption and voltage related problems along with sharing a part of load reactive power demand with shunt APF and thus ease its loading and makes the utilization of UPQC to be optimal. The topology uses three phase three leg inverters for both shunt APF and series APF. The gating signals were generated using Hysteresis controller. The output of High step-Up DC-DC Converter is used to work as DC voltage source for both APFs. The input voltage for the converter is provided by Photo Voltaic array incorporated with P&O MPPT technique. The use of high step-up DC-DC converter is for high voltage gain with better efficiency. The present topology avoids the PLL in shunt active power filter. The simulation results are presented to show the effectiveness of the three phase, three-wire PV-UPQC and here obtained an acceptable THD for source current and kept load voltage
机译:电力质量受到开关处理电源,电动机驱动器,电池充电器等电能处理应用中非线性负载的扩散的极大影响,定制电源设备(如UPQC)在电能质量方面已变得越来越重要舞台,因为它为所有电能质量问题提供了最佳解决方案。 UPQC是通过公共DC链路电容器连接的并联和串联有源功率滤波器的组合。并联有功功率滤波器是消除电流相关问题,通过提供无功功率并调节直流母线电压来改善功率因数的最纠正措施。 APF系列用作受控电压源,并纠正与电压有关的问题,例如骤降或骤升,闪烁,谐波等。两者结合在一起,UPQC改善了服务可靠性。在目前的工作中,并联逆变器控制基于改进的有功-无功(p-q)功率理论,并使用高选择性滤波器(HSF)生成参考电流。 APF系列使用功率角控制(PAC)方案来补偿骤降/骤升,中断和电压相关的问题,并与并联APF共享一部分负载无功功率需求,从而减轻其负载并使UPQC的利用率达到最佳。该拓扑将三相三脚逆变器用于并联APF和串联APF。使用迟滞控制器产生门控信号。高升压DC-DC转换器的输出用作两个APF的DC电压源。转换器的输入电压由结合P&O MPPT技术的光伏阵列提供。高升压DC-DC转换器的使用是为了获得更高效率的高电压增益。本拓扑避免了并联有源功率滤波器中的PLL。给出的仿真结果表明了三相三线PV-UPQC的有效性,并在此获得了对于源电流和保持负载电压可接受的THD

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    Chaitanya Nakka Pruthiv;

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  • 年度 2015
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