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Multi DGPV installation in transmission system for loss minimization

机译:多DGPV安装在传输系统中,用于损耗最小化

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Most developing countries in the world have witnessed unavoidable increasing power demand. This phenomenon can lead to high power losses and increase in temperature of the transmission lines. Moreover, the continuous increment of the demand can cause reduction of the voltage profile and affect the system stability, which can lead to failure of the power system network due to the stressed condition. Currently, the renewable energy is gaining attention around the globe to meet the generation expansion capacity and to match the increasing load demand. Moreover, the impacts of the renewable energy integration should be studied carefully to avoid any unwanted issues that may lead to power system instability. In this paper, optimal placement and sizing of distributed-generation photovoltaic (DGPV) system are formulated in order to minimize the losses using Adaptive Evolutionary Programming (AEP) on IEEE-30 bus system. DGPV sizes and loadability of selected buses are varied and transmission losses are recorded. The results indicate that the integration of multi DGPV unit in the transmission line improves the line losses of the system.
机译:世界上大多数发展中国家都目睹了不可避免的力量需求。这种现象可以导致高功率损耗和传输线的温度增加。此外,需求的连续增量可能导致电压曲线的减少并影响系统稳定性,这可能导致电力系统网络由于压力的状态而导致失效。目前,可再生能源正在全球越来越关注,以满足发电扩张能力并符合负载需求的不断增加。此外,应仔细研究可再生能源集成的影响,以避免任何可能导致电力系统不稳定的不需要的问题。在本文中,配制了分布式发电光伏(DGPV)系统的最佳放置和尺寸,以最小化IEEE-30总线系统上使用自适应进化编程(AEP)的损失。可以改变所选总线的DGPV尺寸和可加载性,并记录传输损耗。结果表明,在传输线中的多DGPV单元的集成提高了系统的线路损耗。

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