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首页> 外文期刊>Procedia Computer Science >Impact of Residential Photovoltaic Generation in Smart Grid Operation: Real Example
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Impact of Residential Photovoltaic Generation in Smart Grid Operation: Real Example

机译:住宅光伏发电对智能电网运营的影响:真实示例

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摘要

This paper assesses the impact of residential photo-voltaic (PV) generation on the operation of a distribution smart grid in Chile. In particular, we focus on distribution losses and bus voltage regulation. This smart grid is composed of three hundred residential customers and belongs to the Central Inter-connected System (CIS) of Chile. A set of scenarios with different daily load profiles and generating levels are considered. The demand of each client is obtained by measuring the total demand at the distribution transformer and is disaggregating it using consumption profiles. The possibility of reactive power injection through the PV power converters is also considered. To estimate its maximum impact, the reactive power injection is calculated by minimizing network losses through optimal power flow. The location of the PV generation is a random variable with uniform distribution, and the expected losses and voltage profiles are determined using the Monte Carlo method. Three levels of PV generation are considered, 5%, 10% and 15% of the total distribution load. As was expected, the voltage in all the buses of the system increases when reactive power is injected by the power converters of the PV generation. In addition, losses compared to the case without PV generation, decrease by 44% in the most favorable scenario and 1% in the worst case. An estimation for the 40% of residential customers in Chile, considering only 5% penetration of PV generation, give as more than 170.000 MWh of savings in generation per year.
机译:本文评估了住宅光伏(PV)发电对智利配电智能电网运行的影响。特别是,我们专注于配电损耗和总线电压调节。该智能电网由三百个住宅用户组成,属于智利的中央互联系统(CIS)。考虑了一组具有不同每日负荷曲线和发电量的方案。每个客户的需求都是通过测量配电变压器的总需求而获得的,并使用消耗曲线对其进行分解。还考虑了通过PV功率转换器注入无功功率的可能性。为了估计其最大影响,通过使最佳功率流最小化网络损耗来计算无功功率注入。 PV生成的位置是具有均匀分布的随机变量,并且使用蒙特卡洛方法确定预期的损耗和电压曲线。光伏发电分为三个级别,分别占总配电负荷的5%,10%和15%。不出所料,当光伏发电的功率转换器注入无功功率时,系统所有母线中的电压都会增加。此外,与没有光伏发电的情况相比,损失在最有利的情况下减少了44%,在最坏的情况下减少了1%。仅考虑光伏发电的5%渗透率,估计智利40%的居民用户每年可节省超过170.000 MWh的发电量。

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