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The impact of distributed generation on transmission and distribution losses in Sri Lankan power system

机译:分布式发电对斯里兰卡电力系统输配电损失的影响

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Share of Non-Conventional Renewable Energy (NCRE), small hydro, wind, solar, bio-mass etc based electricity generation in Sri Lanka at present is 10% of the total annual generation. The Government of Sri Lanka has declared a national target of 20% from NCRE by 2020[1]. Most of NCRE power plants have been connected to the distribution network and are termed as Distributed Generators (DGs). With the increase of share of DGs, it affects system reliability, power quality and economic operation of the distribution network. This paper focuses on the impact of economic operation of transmission and distribution network due to distributed generation in Sri Lankan power system. Network simulation studies have been carried out for transmission network and for four grid substations to which many DGs have been connected. The analysis revealed that transmission network losses have reduced with increase penetration of DGs to the system while distribution network losses are dependent on the amount of DG capacities connected to the distribution network. However, there is a reduction of network losses when overall network is considered thereby giving financial benefit from DGs added to the system.
机译:目前,斯里兰卡非常规可再生能源(NCRE),小型水力,风能,太阳能,生物质能等发电量所占比例为年度总发电量的10%。斯里兰卡政府宣布到2020年NCRE的全国目标为20%[1]。大多数NCRE发电厂都已连接到配电网络,并称为分布式发电机(DG)。随着DG份额的增加,它会影响配电网的系统可靠性,电能质量和经济运行。本文着眼于斯里兰卡电力系统中分布式发电对输配电网络经济运行的影响。已经对传输网络以及与许多DG连接的四个电网变电站进行了网络仿真研究。分析显示,随着DG对系统的渗透率的提高,传输网络的损耗减少了,而配电网的损耗则取决于连接到配电网的DG容量。但是,当考虑整个网络时,可以减少网络损失,从而从添加到系统的DG中获得经济利益。

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