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A Low-cost Reconfigurable Field-programmable Gate Array Based Three-phase Shunt Active Power Filter for Current Harmonic Elimination and Power Factor Constraints

机译:基于低成本可重构现场可编程门阵列的三相并联有源电力滤波器,用于消除电流谐波和功率因数约束

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摘要

Non-linear loads, such as switched mode power supply, adjustable-speed drives, arc furnaces, etc., result in deterioration of power quality in terms of current harmonics and reactive power demand. Shunt active power filters are widely used to compensate the current harmonics, thereby improving power quality. Digital signal processors and microcontroller units used in digital control of shunt active power filters are constrained by a complex algorithm structure, adaptability, accuracy, the absence of feedback loop delays, and larger execution time. Shunt active power filters require a faster computation update rate to maintain the closed-loop bandwidth, accurate sensing of voltage and current, proper estimation of parameters, and a high frequency pulse-width modulation. In this article, a low-cost single all-on-chip field-programmable gate array implements the digital control of a three-phase shunt active power filter. This proposed implementation scheme has much less execution time and boosts the overall performance of the system. All required tasks of a typical shunt active power filter are implemented with a low-cost single all-on chip field-programmable gate array module that provides freedom to reconfigure for any other applications. Additional features, such as anti-windup, over-sampling, and time multiplexing, are also added to improve the overall performance. The proposed system is designed to meet IEEE 519 and IEC EN 61000-3 recommendations in terms of harmonic elimination and unity power factor requirements. The entire algorithm is coded, processed, and simulated using Xilinx 12.1 ISE Suite to estimate the advantages of the proposed system. This code is also defused on the low-cost single all-on-chip Xilinx Spartan 3A DSP-XC3SD1800 laboratory prototype, and experimental results obtained match with simulated counterparts. The proposed control scheme for the shunt active power filter results in reduces current harmonics under dynamic and steady-state operating conditions.
机译:非线性负载(例如开关电源,可调速驱动器,电弧炉等)会导致电流谐波和无功功率方面的电能质量下降。并联有源电力滤波器被广泛用于补偿电流谐波,从而改善了电能质量。并联有源滤波器的数字控制中使用的数字信号处理器和微控制器单元受复杂的算法结构,适应性,准确性,没有反馈回路延迟和执行时间较长的限制。并联有源功率滤波器需要更快的计算更新速率来维持闭环带宽,电压和电流的精确感测,参数的正确估计以及高频脉冲宽度调制。在本文中,低成本的单芯片全现场可编程门阵列实现了三相并联有源功率滤波器的数字控制。所提出的实施方案具有更少的执行时间,并提高了系统的整体性能。典型的并联有源滤波器的所有必需任务均通过低成本的单芯片全芯片现场可编程门阵列模块来实现,该模块为任何其他应用提供了自由配置的自由。还添加了其他功能,例如抗饱和,过采样和时间多路复用,以提高整体性能。拟议的系统旨在在谐波消除和单位功率因数要求方面满足IEEE 519和IEC EN 61000-3建议。使用Xilinx 12.1 ISE Suite对整个算法进行编码,处理和仿真,以评估所提出系统的优势。该代码还在低成本的单片Xilinx Spartan 3A DSP-XC3SD1800实验室原型上进行了分解,并且获得的实验结果与仿真的结果相匹配。所提出的用于并联有源功率滤波器的控制方案可降低动态和稳态工作条件下的电流谐波。

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