Parameter Optimization Method for AC Filters in HVDC Considering Reactive Power Compensation Effectiveness

IF 3.7 2区 工程技术 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Transactions on Power Delivery Pub Date : 2024-11-11 DOI:10.1109/TPWRD.2024.3495706
Sheng Lin;Dalin Mu;Lijuan Xu;Zhengyou He
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Abstract

In high-voltage direct current (HVDC) systems, the parameters of the AC filter (ACF) have a significant impact on the performance of reactive power (RP) compensation and filtering, as well as the capital cost. However, the RP compensation effectiveness and economy of ACFs under different HVDC operation modes are difficult to be satisfied comprehensively. Therefore, a parameter optimization method for ACFs is proposed to balance the technical performance and economy in this paper. First, considering the variety of actual HVDC operation modes, the parameters of ACFs are analyzed in relation to the performance and capital cost, which leads to the key impact factors of parameter design. Then, considering both the RP exchange quantity and the capital cost of investment and land occupation, the objective function is defined. By considering the sub-bank numbers and filtering performance of ACFs, the constraints are proposed. Finally, genetic algorithm with the elitist strategy is used to obtain the optimized ACF parameters. The comparative results show that the performance of RP compensation and filtering of the optimized ACFs is effectively improved and guaranteed, and meanwhile the capital cost is reduced.
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考虑无功功率补偿效果的高压直流交流滤波器参数优化方法
在高压直流(HVDC)系统中,交流滤波器(ACF)的参数对无功功率(RP)补偿和滤波的性能以及投资成本有着重要的影响。然而,在不同的高压直流运行方式下,ACFs的RP补偿效果和经济性很难得到全面的满足。为此,本文提出了一种兼顾技术性能和经济效益的ACFs参数优化方法。首先,考虑到实际HVDC运行方式的多样性,分析了ACFs的参数与性能和资金成本的关系,得出了参数设计的关键影响因素。然后,在考虑RP交换数量和投资、占用土地的资金成本的情况下,定义目标函数。通过考虑ACFs的子库数和滤波性能,提出了约束条件。最后,采用遗传算法和精英策略得到优化后的ACF参数。对比结果表明,优化后的ACFs的RP补偿和滤波性能得到了有效的提高和保证,同时降低了资金成本。
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来源期刊
IEEE Transactions on Power Delivery
IEEE Transactions on Power Delivery 工程技术-工程:电子与电气
CiteScore
9.00
自引率
13.60%
发文量
513
审稿时长
6 months
期刊介绍: The scope of the Society embraces planning, research, development, design, application, construction, installation and operation of apparatus, equipment, structures, materials and systems for the safe, reliable and economic generation, transmission, distribution, conversion, measurement and control of electric energy. It includes the developing of engineering standards, the providing of information and instruction to the public and to legislators, as well as technical scientific, literary, educational and other activities that contribute to the electric power discipline or utilize the techniques or products within this discipline.
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