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Analysis of high penetration of electric vehicles and photovoltaics on a greek low-voltage network

机译:在希腊低压网络上分析电动汽车和光伏发电的高渗透率

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This paper examines the scenario of high penetration of Photovoltaics (PV) and Electric Vehicles (EV) in Low-Voltage (LV) Distribution Networks (DN), using as a case study a typical DN found in Greece. The European Union (EU) has set targets and Directives that make it very likely to find in the near future DNs with a large number of PVs inducing overvoltages and uncontrolled EV charging resulting in under-voltages. Since PV production and EV charging generally happen at different times, especially in residential case studies, a DN may experience both unwanted circumstances at the same day. One way to deal with these issues is to smartly utilize distributed or centralized storage, which may additionally delay necessary investments on the DNs. This paper utilizes a case study of a typical DN found in Greece, suitably adapted to illustrate the above concepts. First, an analysis of the stress imposed to the DN by both PVs and EVs is evaluated, using as input real measurements at the beginning of the LV feeder. Then, the paper suggests a simple utilization of storage in order to keep the voltages at all nodes of the DN inside the desired limits. Finally, a short analysis regarding the power losses is presented.
机译:本文以在希腊发现的典型DN为例,研究了光伏(PV)和电动汽车(EV)在低压(LV)配电网络(DN)中的高渗透率情况。欧盟(EU)设定了目标和指令,使其很可能在不久的将来找到具有大量PV导致过电压和EV充电失控而导致电压不足的DN。由于PV生产和EV充电通常在不同的时间进行,尤其是在住宅案例研究中,因此DN可能在同一天遇到两种不利情况。解决这些问题的一种方法是聪明地利用分布式或集中式存储,这可能会额外延迟DN上的必要投资。本文利用了一个在希腊发现的典型DN的案例研究,并对其进行了适当的修改以说明上述概念。首先,通过在低压给料机开始时将实际测量值用作输入,评估对PV和EV施加到DN的应力的分析。然后,本文提出了一种简单的存储方式,以将DN所有节点上的电压保持在所需的限制之内。最后,对功率损耗进行了简短分析。

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