基于改进DE算法的柔性资源电网预期安全成本问题求解方法

B. Kumari, K. Vaisakh, N. Sahoo
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引用次数: 0

摘要

提出了一种改进的差分进化(MDE)算法。该算法解决了期望安全成本动态最优潮流(ESCDOPF)问题。此外,为了提高安全性和可靠性,灵活的资源(FRs),即需求响应(DR),电池储能系统(BESS),高压直流(HVDC)连接等,已被纳入ESCDOPF问题。这些灵活的资源作为一种预防性控制措施,以提高整个系统的能源效率,从而大大减少燃料成本、电力损失、电力消耗和为公用事业节省成本。介绍了几个案例研究,强调了灵活资源在降低运营成本方面的作用,同时通过坚持电压和线路负载限制来保持可接受的功率平衡。在MATLAB软件环境下,在改进的ieee30总线系统上测试了所提出的MDE算法的有效性。结果表明,具有灵活资源的ESCDOPF模型在交流和多终端交直流系统等场景下,在正常和应急条件下具有安全、可靠和更好的经济运行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Modified DE Algorithm Based Solution for Expected Security Cost Problem of Power Grids with Flexible Resources
A modified differential evolution (MDE) algorithm is proposed in this paper. This algorithm solves the problem of expected security cost dynamic optimal power flow (ESCDOPF). Additionally, to increase security and dependability, flexible resources (FRs) i.e., Demand Response (DR), Battery Energy Storage System (BESS), High Voltage Direct Current (HVDC) linkages, etc., have been incorporated into the ESCDOPF problem. These flexible resources serve as a preventive control measure to enhance the energy efficiency of the system as a whole, resulting in a substantial decrease in fuel costs, power losses, power consumption and cost savings for utilities. Several case studies are presented, emphasising the role of flexible resources in lowering operational costs while maintaining an acceptable power balance by adhering to voltage and line loading constraints. The efficacy of the proposed MDE algorithm is tested on a modified IEEE 30 bus system in the MATLAB software environment. Results show that the ESCDOPF model with flexible resources offers secure, reliable, and better economic operations in scenarios like AC and multi-terminal AC-DC systems under normal and post-contingency conditions.
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