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End user voltage regulation to ease urban low-voltage distribution congestion

机译:最终用户电压调节可缓解城市低压配电拥堵

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摘要

Owing to the increasing demand in the urban areas for new technologies such as heat pumps and electric vehicles (EVs), greater power capacity in low voltage (LV) distribution networks is becoming increasingly important. This study will investigate how to improve the power capacity through the implementation of point of use voltage regulation (PUVR). PUVR relies on a power electronics converter at each end-user. Most LV network cabling has a voltage limit of 1 kV, PUVR exploits this voltage rating to increase the network capacity. This study will describe and discuss the results from a viability study using data from a utility company, which shows that the capacity in the LV network could be increased by an additional 500 kVA. However, it was also found that PUVR using present off-the-shelf converters is not as cost-effective as replacing the LV network cables. Two power electronics topologies have been investigated in the simulation studies to date: the AC chopper circuit and the back-to-back inverter circuit. These two topologies were compared and the AC chopper was found to be a cheaper, more efficient topology. Therefore the AC chopper is more suitable for this application and may increase the viability of the PUVR.
机译:由于城市地区对诸如热泵和电动汽车(EV)等新技术的需求不断增长,低压(LV)配电网络中更大的功率容量变得越来越重要。本研究将研究如何通过实施使用点电压调节(PUVR)来提高功率容量。 PUVR依赖于每个最终用户的电力电子转换器。大多数LV网络电缆的电压极限为1 kV,PUVR利用此电压额定值来增加网络容量。这项研究将使用公用事业公司的数据描述和讨论一项可行性研究的结果,该研究表明,低压网络的容量可以再增加500 kVA。但是,还发现使用现有的现成转换器的PUVR的经济效益不如更换LV网络电缆。迄今为止,在仿真研究中已经研究了两种功率电子拓扑:交流斩波器电路和背对背逆变器电路。比较了这两种拓扑,发现交流斩波器是一种更便宜,更高效的拓扑。因此,交流斩波器更适合此应用,并且可以提高PUVR的生存能力。

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