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Flexible Control of Single-phase Unified Power Quality Conditioner Using Frequency-domain Approach

机译:频域法灵活控制单相统一电能质量调节器

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摘要

Power conditioning devices are generally designed for full compensation of power quality problems irrespective of the requirements of the consumers. In this article, flexible control of a single-phase unified power quality conditioner is proposed, which attributes the responsibility of the consumer and the utility. For the flexible control of a single-phase unified power quality conditioner, an approach based on Fourier analysis is used. The performance of a single-phase unified power quality conditioner is evaluated for the mitigation of customer-generated harmonics, total current harmonics, reactive power, voltage harmonics, and their combinations, depending on the requirements. In this proposed control strategy, an indirect approach is used in which control is made over the fundamental supply current and fundamental supply voltage instead of the fast changing active power filter current and voltage, thereby reducing the effect of computational delay. A dynamic model of the unified power quality conditioner is developed in MATLAB/SIMULINK (The MathWorks, Natick, Massachusetts, USA), and simulation results demonstrating power quality improvement in the system are presented for a distorted supply and a combination of linear and non-linear loads.
机译:功率调节装置通常被设计用于完全补偿功率质量问题,而与消费者的要求无关。在本文中,提出了一种单相统一电能质量调节器的灵活控制,该控制归因于用户和公用事业的责任。为了灵活地控制单相统一电能质量调节器,使用了一种基于傅立叶分析的方法。根据要求,评估了单相统一电能质量调节器的性能,以减轻用户产生的谐波,总电流谐波,无功功率,电压谐波及其组合。在此提出的控制策略中,使用了一种间接方法,其中对基本电源电流和基本电源电压进行控制,而不是对快速变化的有源功率滤波器电流和电压进行控制,从而减少了计算延迟的影响。在MATLAB / SIMULINK(美国马萨诸塞州纳蒂克的MathWorks)上开发了统一电能质量调节器的动态模型,并给出了演示结果,证明了系统中电能质量的改善,从而改善了电源供应,并结合了线性和非线性负载。

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