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首页> 外文期刊>International journal of electrical power and energy systems >Design of an advanced electric power distribution systems using seeker optimization algorithm
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Design of an advanced electric power distribution systems using seeker optimization algorithm

机译:使用导引头优化算法的高级配电系统设计

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The power distribution network design problem has a growing impact on secure and economical operation of distribution power system. This issue is well known as a non-linear, multi-modal and multi-objective optimization problem where global optimization techniques are required in order to avoid local minima. In this study, a new approach using seeker optimization algorithm (SOA) is proposed for distribution system planning problem with simultaneous placement of automatic reclosers (RAs), considering total system economic cost, overall system reliability, system power losses and voltage deviations as an objective functions. Normally, conventional power distribution systems (CPDS) are radial in nature and momentary fault in the system causes large area of the grid to be blacked out, which leads to huge load interruptions. Reliable distribution system minimize this effect by allowing faults to clear themselves by protection device operations such as automatic reclosers (RAs) and quickly restores the power through system reconfiguration by minimizing the loads affected. Thus, in order to prevent the system from momentary faults, simultaneous placement of RAs has been also done which leads to a design of an advanced power distribution system (APDS). Thus, the reliability issues are of major importance for effective planning of an APDS. For evaluation of reliability measure, the contingency-load-loss index (CLLI) is assessed in this paper, which is independent of the failure rate and fault repair duration of the feeder branches. The performance of the proposed algorithm is extensively assessed and comparisons are made with Particle Swarm Optimization (PSOs), Genetic Algorithm (GA) and graph theoretical approach (GTA) applied on the 54 and 100-bus primary power distribution systems. The simulation results show that the proposed approach performed better than the other listed algorithms and can be efficiently used for the optimal design of an advanced power distribution system.
机译:配电网络设计问题对配电系统的安全和经济运行产生越来越大的影响。这个问题是众所周知的非线性,多模式和多目标优化问题,其中需要全局优化技术以避免局部最小值。在这项研究中,针对总系统经济成本,总体系统可靠性,系统功率损耗和电压偏差为目标,提出了一种使用搜寻器优化算法(SOA)的新方法,用于同时放置自动重合闸(RA)的配电系统规划问题功能。通常,常规的配电系统(CPDS)本质上是放射状的,并且系统中的瞬时故障会导致大面积的电网变黑,从而导致巨大的负载中断。可靠的配电系统通过允许故障通过保护设备操作(例如自动重合闸(RA))来清除故障,从而将这种影响最小化,并通过将受影响的负载降至最低,通过系统重新配置来快速恢复电源。因此,为了防止系统出现瞬时故障,还完成了RA的同时放置,这导致了高级配电系统(APDS)的设计。因此,可靠性问题对于有效规划APDS至关重要。为了评估可靠性措施,本文评估了意外负载损失指数(CLLI),该指数与馈线分支的故障率和故障修复持续时间无关。对该算法的性能进行了广泛的评估,并与应用于54和100总线一次配电系统的粒子群优化(PSO),遗传算法(GA)和图论方法(GTA)进行了比较。仿真结果表明,所提出的方法性能优于其他列出的算法,并且可以有效地用于高级配电系统的优化设计。

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