引用本文:欧阳金鑫,于莉,蒋航,余建峰,熊俊,朱开阳.基于多层随机优化的电网安全稳定控制装置机会检修决策方法[J].电力自动化设备,2023,43(6):
OUYANG Jinxin,YU Li,JIANG Hang,YU Jianfeng,XIONG Jun,ZHU Kaiyang.Opportunistic maintenance decision method for power grid security and stability control device based on multi-layer stochastic optimization[J].Electric Power Automation Equipment,2023,43(6):
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基于多层随机优化的电网安全稳定控制装置机会检修决策方法
欧阳金鑫1, 于莉1, 蒋航2, 余建峰1, 熊俊2, 朱开阳3
1.重庆大学 输配电装备及系统安全与新技术国家重点实验室,重庆 400044;2.国家电网有限公司西南分部,四川 成都 610094;3.国电南瑞科技股份有限公司 电网安全稳定控制技术分公司,江苏 南京 211106
摘要:
为保障安全稳定控制系统的可靠经济运行,提出了基于多层随机优化的电网安全稳定控制装置机会检修决策方法。分析了安全稳定控制装置投入运行后的状态转移过程,考虑安全稳定控制装置内部硬件之间、安全稳定控制装置之间、安全稳定控制装置和一次设备的关联性,从3个层次统筹安全稳定控制装置的功能关联、经济关联及随机关联,构建了嵌套复合目标函数,从而建立了多层次安全稳定控制装置机会检修决策模型,并通过算例表明了该模型能够提供安全稳定控制装置的最佳检修策略,提高安全稳定控制装置的检修效益,并实现安全稳定控制装置检修与电力系统运行的有效平衡。
关键词:  电力系统  稳定  安全稳定控制装置  机会检修  检修策略  关联性
DOI:10.16081/j.epae.202211006
分类号:TM712
基金项目:支撑大型安控系统安全运行的状态及策略参数在线诊断技术(SGSXDK00DJJS2100113)
Opportunistic maintenance decision method for power grid security and stability control device based on multi-layer stochastic optimization
OUYANG Jinxin1, YU Li1, JIANG Hang2, YU Jianfeng1, XIONG Jun2, ZHU Kaiyang3
1.State Key Laboratory of Power Transmission and Distribution Equipment and System Safety and New Technology, Chongqing University, Chongqing 400044, China;2.Southwest Branch of State Grid Corporation of China, Chengdu 610094, China;3.Power Grid Security and Stability Control Technology Branch, Guodian Nanrui Technology Co.,Ltd.,Nanjing 211106, China
Abstract:
In order to ensure the reliable and economical operation of security and stability control system, an opportunistic maintenance decision method based on multi-layer stochastic optimization for power grid safety and stability control device is proposed. The state transfer process of security and stability control device in operation is analyzed. Considering the correlation between internal hardware of security and stabi-lity control devices, security and stability control devices, security and stability control device and primary equipment, the functional correlation, economic correlation and random correlation of security and stability control device are coordinated from three layers. Then the nested compound objective function is constructed to establish the multi-layer opportunistic maintenance decision model of security and stability control device. An example is given to show that the model can provide the optimal maintenance strategy of the security and stability control device, improve its maintenance benefit, and realize the effective balance between its maintenance and power system operation.
Key words:  electric power systems  stability  security and stability control device  opportunity maintenance  maintenance strategy  correlation

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