{"title":"基于二进制编程的保护装置可靠性成本分配","authors":"F. Darabi, A. Shooshtari, E. Babaei, S. Darabi","doi":"10.1109/ISBEIA.2011.6088860","DOIUrl":null,"url":null,"abstract":"The problem of location of protective devices is important in distribution networks so the various methods were considered for installation of fuse, recloser, disconnecting switch and breaker. In these methods, a set of protection, economic and reliability aspects are considered. Because of various goals, the optimal approach from some intelligent methods such as genetic algorithm does not get the best approach. At this condition, using mathematic methods is reasonable because they satisfy the best and the optimal approach. Binary programming method is one of these mathematic optimization methods that its speed is high. The problem of location of protective devices is naturally binary in distribution networks. This specification causes using binary programming method for optimal location of protective devices. In this analysis, the binary programming method is implemented for optimal location of protective devices installation in distribution networks. The optimization objective function includes the switching procedure cost and protective devices lifetime cost. Furthermore, the SAIFI and SAIDI analyses beside optimal approaches are calculated. The programmer with reliability consideration easily can choose the optimal possible approach. The proposed method make easy to obtain the best approach with protection consideration and etc. To analyze proposed method, a test network is considered. At a distribution network, the breaker is located in the beginning of the network so the simulation result can be extended to obtain the optimal location for recloser, fuse and disconnecting switch. The proposed method is obtained from Visual Studio C# .NET software.","PeriodicalId":358440,"journal":{"name":"2011 IEEE Symposium on Business, Engineering and Industrial Applications (ISBEIA)","volume":"57 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2011-12-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"5","resultStr":"{\"title\":\"Reliability cost allocation of protective devices using binary programming\",\"authors\":\"F. Darabi, A. Shooshtari, E. Babaei, S. Darabi\",\"doi\":\"10.1109/ISBEIA.2011.6088860\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"The problem of location of protective devices is important in distribution networks so the various methods were considered for installation of fuse, recloser, disconnecting switch and breaker. In these methods, a set of protection, economic and reliability aspects are considered. Because of various goals, the optimal approach from some intelligent methods such as genetic algorithm does not get the best approach. At this condition, using mathematic methods is reasonable because they satisfy the best and the optimal approach. Binary programming method is one of these mathematic optimization methods that its speed is high. The problem of location of protective devices is naturally binary in distribution networks. This specification causes using binary programming method for optimal location of protective devices. In this analysis, the binary programming method is implemented for optimal location of protective devices installation in distribution networks. The optimization objective function includes the switching procedure cost and protective devices lifetime cost. Furthermore, the SAIFI and SAIDI analyses beside optimal approaches are calculated. The programmer with reliability consideration easily can choose the optimal possible approach. The proposed method make easy to obtain the best approach with protection consideration and etc. To analyze proposed method, a test network is considered. At a distribution network, the breaker is located in the beginning of the network so the simulation result can be extended to obtain the optimal location for recloser, fuse and disconnecting switch. 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引用次数: 5
摘要
配电网中保护装置的位置问题十分重要,因此对熔断器、重合闸、断开开关和断路器的安装方法进行了多种考虑。在这些方法中,综合考虑了保护、经济和可靠性三个方面。由于目标的不同,一些智能方法如遗传算法的最优解不能得到最优解。在这种情况下,使用数学方法是合理的,因为它们满足最优和最优方法。二进制规划法是其中一种速度较快的数学优化方法。配电网中保护装置的定位问题自然是一个二元问题。本规范规定使用二进制编程方法对保护装置进行最佳定位。在分析中,采用二进制规划方法求解配电网保护装置的最优安装位置。优化目标函数包括切换过程成本和保护装置寿命成本。此外,还计算了最优方法之外的SAIFI和SAIDI分析。考虑可靠性的程序员可以很容易地选择最优的可能方法。该方法便于在考虑保护等因素的情况下获得最佳方法。为了分析所提出的方法,我们考虑了一个测试网络。在配电网中,断路器位于网络的起始位置,因此可以扩展仿真结果以获得重合闸、熔断器和断开开关的最优位置。所提出的方法是在Visual Studio c# . net软件中实现的。
Reliability cost allocation of protective devices using binary programming
The problem of location of protective devices is important in distribution networks so the various methods were considered for installation of fuse, recloser, disconnecting switch and breaker. In these methods, a set of protection, economic and reliability aspects are considered. Because of various goals, the optimal approach from some intelligent methods such as genetic algorithm does not get the best approach. At this condition, using mathematic methods is reasonable because they satisfy the best and the optimal approach. Binary programming method is one of these mathematic optimization methods that its speed is high. The problem of location of protective devices is naturally binary in distribution networks. This specification causes using binary programming method for optimal location of protective devices. In this analysis, the binary programming method is implemented for optimal location of protective devices installation in distribution networks. The optimization objective function includes the switching procedure cost and protective devices lifetime cost. Furthermore, the SAIFI and SAIDI analyses beside optimal approaches are calculated. The programmer with reliability consideration easily can choose the optimal possible approach. The proposed method make easy to obtain the best approach with protection consideration and etc. To analyze proposed method, a test network is considered. At a distribution network, the breaker is located in the beginning of the network so the simulation result can be extended to obtain the optimal location for recloser, fuse and disconnecting switch. The proposed method is obtained from Visual Studio C# .NET software.