串联单相滤波补偿装置组合电压控制系统

S. Bondarenko, O. Bialobrzheskyi, O. Todorov
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引用次数: 2

摘要

供电方式的管理应确保符合三个主要条件:供电运行的经济性、对用户供电的可靠性、电能的标准质量。结构不变的无源滤波器越来越不能满足保持电能质量的要求。为此,研制并实现了电力有源滤波器补偿装置。当电源电压发生畸变时,采用串联滤波补偿装置,通过单相双绕组串联电压互感器接入电网。在先前的调查中已经发现,在滤波补偿装置的运行期间,负载电流在变压器绕组中产生额外的电压降。使用闭环系统并不能补偿上述影响。根据自动控制系统电路分析的结果,选择了组合系统。利用自动控制理论的方法,确定了实现组合控制系统所需的传递函数。基于数学建模方法,建立了单相串联有源滤波补偿装置的数学模型。实验结果表明,非线性失真系数降至1.17%。对提出的解决方案的合理性得出了结论。所获得的自动控制系统可用于串联滤波补偿装置的电压和电流调节。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Combined voltage control system of series single-phase filter-compensating device
Management of power supply modes should ensure compliance with three main conditions: economy of power supply operation, reliability of power supply to consumers, standard quality of electricity. Passive filters with an unchanged structure are less and less satisfying the requirements for maintaining the quality of electrical energy. As a result, power active filter compensating device are developed and implemented. In case of power supply voltage distortion, a series filter compensating device is used, which is connected to the network through a single-phase double-winding series voltage transformer. In the prior investigation it has been found, that during operation of the filter-compensating device the load current creates an additional voltage drop in the transformer winding. The use of a closed loop system does not compensate for said influence. Based on the results of automatic control system circuit analysis, the combined system is selected. Using the methods of automatic control theory, transfer functions necessary for the implementation of the combined control system are determined. Based on mathematical modeling methods, a model of a single-phase series active filter-compensating device has been created. As a result of the experiments, the coefficient of nonlinear distortion was reduced to 1.17%. Conclusions were drawn on the rationality of the proposed solution. The obtained automatic control system can be used to regulation voltage and current of a series filter-compensation device.
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