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Design and Implementation of Hybrid Active Power Filter (Hapf) for UPS System

机译:UPS系统混合有源电力滤波器(HAPF)的设计与实现

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Hybrid Active Power Filter (HAPF) is designed and applied for Uninterrupted Power Supply (UPS) System to mitigate harmonic currents in UPS during the power conversion from rectifiers to inverters (AC-DC-AC Converters). Various UPS types and topologies are used for continuous power supply without delay and protection to connected loads. In spite of the fact that UPS is one of the power quality apparatus but it has also drawback of disturbing the power system quality of system by current harmonics and voltage distortion during conversion of power. Passive and EMI Filters could not eliminate harmonics effectively from UPS system therefore it requires modern, rapid filtering method as well combination of Active and Passive Filters. Proposed model of HAPF for UPS System could mitigate current harmonics for optimal power transfer and minimize losses, increase overall efficiency, reliability and life span of equipment. Higher harmonic current and higher voltage distortion leads to greater power loss. In this paper the (d-q) theorem is applied for the identification of harmonic currents. The d-q theorem and calculation creates the signal of reference compensation current and this produced signal of current is tracked by the yield current of the voltage source converter.. Hysteresis based controller for HAPF is applied to create the switching signals to regulate and maintain the voltage source converter output currents. Harmonics and efficiencies are analyzed at different loads and on charging and discharging of batteries of various UPS System in different industries and sectors on the basis of experimental investigation then HAPF is designed and implemented. In simulation results, it is observed that THD reduced from 46 to 10%, the harmonic currents were compensated and eliminated effectively which improved power quality of UPS System. Furthermore, addition of proposed HAPF could save the power up to 15 % which lost due to poor power quality of UPS System.
机译:设计并应用了混合有源电力滤波器(HAPF),可用于不间断电源(UPS)系统,以减轻从整流器到逆变器的电源转换期间UPS中的谐波电流(AC-DC-AC转换器)。各种UPS类型和拓扑结构用于连续电源,而不会延迟和保护到连接的负载。尽管如此,UPS是电力质量仪器之一,但它还通过电力转换期间通过电流谐波和电压失真扰乱系统的电力系统质量。被动和EMI过滤器无法从UPS系统中有效消除谐波,因此它需要现代,快速过滤方法以及主动和无源滤波器的组合。提出UPS系统的HAPF型号可以减轻电流谐波,以实现最佳电力传输,最大限度地减少设备的整体效率,可靠性和寿命。更高的谐波电流和更高的电压失真导致更大的功率损耗。在本文中,(D-Q)定理应用于衡量谐波电流。 DQ定理和计算创建了参考补偿电流的信号,并且通过电压源转换器的屈服电流跟踪了该电流的产生信号。用于HAPF的滞后控制器以创建开关信号来调节和维护电压源转换器输出电流。在不同行业和各个行业的各种UPS系统的电池中分析了谐波和效率,基于实验研究,设计和实施了HAPF。在仿真结果中,观察到,THD降低到10%,补偿谐波电流并有效地消除了改善UPS系统的电力质量。此外,添加所提出的HAPF可以节省高达15%的电力,由于UPS系统的功率质量差而损失。

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