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Impacts of Grid-Connected PV System on the Steady-State Operation of a Malaysian Grid

机译:网格连接光伏系统对马来西亚网格稳态运行的影响

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Distributed generation (DG) systems have many impacts on the power network. Previously, the power was supplied from the centralized generating unit and then dispatched to the loads, but today DG systems provide electrical power at the customers' sites and slightly decline the losses due to either transmission or distribution of the electricity. Furthermore, DG systems are able to reduce the emission of fossil fuel pollutants, maintenance costs and improve the voltage profile. Indeed, the aim of this paper is to qualify the effects of the photovoltaic DG (PV-DG) system interconnection on the voltage profile and power losses over a sample power grid located in Peninsular Malaysia for three load pattern categories such as residential, commercial and industrial. Moreover, the solar radiation data associated with a typical location in Malaysia would be extracted from the web, and then the impacts of PV-DG are supposed to be investigated based on the PV output power variations during a day. Finally, the resulted voltage profiles and power dissipations would be compared for before and after the PV-DG installation in different locations of distribution feeders.
机译:分布式发电(DG)系统对电力网络的影响很多。以前,从集中式发电机提供电源,然后调度到负载,但今天DG系统为客户网站提供电力,并且由于电力的传输或分配而略微下降损耗。此外,DG系统能够减少化石燃料污染物,维护成本和改善电压曲线的发射。实际上,本文的目的是限定光伏DG(PV-DG)系统互连对位于诸如住宅,商业和商业及商业和商业和商业和工业的。此外,与马来西亚典型位置相关联的太阳辐射数据将从纤维网中提取,然后应该基于每天的PV输出功率变化来研究PV-DG的冲击。最后,将得到导致的电压型材和功率耗散,以便在分配馈线的不同位置之前和之后进行比较。

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