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Strategic Deployment of Distributed Generation and DSTATCOM in Radial Distribution System Considering Reliability Aspect

机译:考虑可靠性方面的径向分布系统中分布式发电和DSTATCOM的战略部署

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At present scenario with the increase in load demand, a need for voltage profile enhancement, minimization of line losses and thereby increasing system overall reliability has increased enormously. Nevertheless, increasing the generation capacity of existing power station is limited due to various environmental and economic constrains which consequently calls for precise assessment of locally optimized solution. In this paper, the distribution system is reconfigured by simultaneous deployment of Renewable Distributed Generation (DG) and Distribution Flexible AC Transmission System (DFACTS) for the system voltage profile improvement, reliability and reduction of the line losses. A Modified Firefly Algorithm (MoFA) is proposed to procure the optimal location and size of DG and DSTATCOM (Distributed Static Compensator) considering improvement of voltage profile, reliability and line losses reduction. To increase the computational efficiency, performance analysis for optimal allocation of the devices is conducted only at the weaker zones of the system. Revamp Voltage Stability Indicator (RVSI) is used to identify the weakest zone/lines and the corresponding receiving end buses are identified as the weak bus. Voltage Profile Improvement Index (VPII) enhances the voltage profile. The real and reactive power losses are reduced by implementing Line Loss Reduction Index (LLRI). The proposed algorithm is compared with two other algorithms such as PSO (Particle Swarm Optimization) and GA (Genetic Algorithm). Result indicates MoFA exhibits better convergence rate, time and solution quality. The proposed approach is to be tested in IEEE 69-bus radial distribution system.
机译:当前,随着负载需求的增加,对电压分布图的增强,线路损耗的最小化以及由此增加的系统整体可靠性的需求已大大增加。然而,由于各种环境和经济限制,限制了增加现有电站的发电能力,因此需要精确评估局部优化的解决方案。本文通过同时部署可再生分布式发电(DG)和配电柔性交流输电系统(DFACTS)来重新配置配电系统,以改善系统电压曲线,提高可靠性并降低线路损耗。提出了一种改进的萤火虫算法(MoFA),以获取DG和DSTATCOM(分布式静态补偿器)的最佳位置和大小,同时考虑了电压分布,可靠性和线路损耗的降低。为了提高计算效率,仅在系统的较弱区域进行设备最佳分配的性能分析。修正电压稳定度指示器(RVSI)用于识别最弱的区域/线路,并将相应的接收端总线识别为弱总线。电压曲线改善指数(VPII)增强了电压曲线。通过实现线损减少指数(LLRI),可以减少有功和无功损耗。将该算法与其他两种算法进行了比较,如PSO(粒子群优化)和GA(遗传算法)。结果表明MoFA具有更好的收敛速度,时间和解决方案质量。该提议的方法将在IEEE 69总线径向分配系统中进行测试。

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