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首页> 外文期刊>Leonardo Journal of Sciences >Application of Multi-Objective Evolutionary Algorithm for Optimal Reactive Power Dispatch with Flexible AC Transmission System Devices
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Application of Multi-Objective Evolutionary Algorithm for Optimal Reactive Power Dispatch with Flexible AC Transmission System Devices

机译:多目标进化算法在柔性交流输电系统装置最优无功调度中的应用

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Because their capability to change the network parameters with a rapid response and enhanced flexibility, flexible AC transmission system ( FACT S) devices have taken more attention in power systems operations as improvement of voltage profile and minimizing system losses. In this way, this paper presents a multi-objective evolutionary algorithm (MOEA) to solve optimal reactive power dispatch (ORPD) problem with FACTS devices. This nonlinear multi-objective problem (MOP) consists to minimize simultaneously real power loss in transmission lines and voltage deviation at load buses, by tuning parameters and searching the location of FACTS devices. The constraints of this MOP are divided to equality constraints represented by load flow equations and inequality constraints such as, generation reactive power sources and security limits at load buses. Two types of FACTS devices, static synchronous series compensator (SSSC) and unified power flow controller (UPFC) are considered. A comparative study regarding the effects of an SSSC and an UPFC on voltage deviation and total transmission real losses is carried out. The design problem is tested on a 6-bus system.
机译:由于灵活的交流传输系统(FACT S)设备具有以快速响应和增强的灵活性来更改网络参数的能力,因此在电力系统操作中越来越受到关注,因为它可以改善电压分布并最大程度地减少系统损耗。通过这种方式,本文提出了一种多目标进化算法(MOEA),以解决FACTS设备的最优无功分配(ORPD)问题。该非线性多目标问题(MOP)包括通过调整参数和搜索FACTS设备的位置,同时使传输线中的实际功率损耗和负载母线上的电压偏差最小化。该MOP的约束分为由潮流方程表示的相等约束和不等约束,例如发电无功功率源和负载母线的安全极限。考虑了两种类型的FACTS设备:静态同步串联补偿器(SSSC)和统一潮流控制器(UPFC)。进行了关于SSSC和UPFC对电压偏差和总传输实际损耗的影响的比较研究。在6总线系统上测试了设计问题。

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