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Overcoming the power factor apparent degradation of loads fed by photovoltaic distributed generators

机译:克服光伏分布发电机送料的负荷的功率因数明显劣化

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Decentralised grid-connected photovoltaic systems (DGCPS) have proved to be an alternative to traditional electricity generation because they have introduced advantages to power systems, such as reducing electrical losses, relieving transmission and distribution lines, and provisioning ancillary services. Despite all these benefits, a new class of problem concerning DGCPS has been reported in the literature. From the utilities' point of view, the installation of a DGCPS may lead to an apparent degradation of the load power factor. This effect does not have physical causes, i.e. equipment malfunction or overuse of reactive power by the load, although it may lead to reactive power excess charging (RPEC). Since these charges could lengthen the payback of PV installations, this paper aims to assess three strategies to tackle this issue. The first strategy, which has demonstrated to be best for prosumers, is a new regulatory scheme for reactive power monitoring in consumer units with DGCPS. The other two solutions are classical approaches based on reactive power compensation from PV inverters or capacitor banks. For these two last solutions, this paper provides an innovative and optimized way of operation that can adjust the load power factor measured by the utility in real-time, minimizing economic losses. (c) 2020 Elsevier Ltd. All rights reserved.
机译:被证明的分散的电网连接的光伏系统(DGCPS)已被证明是传统发电的替代品,因为它们引入了电力系统的优势,例如减少电损耗,减少传输和配电线路,以及供应辅助服务。尽管有这些福利,但在文献中报告了一项关于DGCP的新问题。从实用程序的角度来看,DGCP的安装可能导致负载功率因数的表观劣化。这种效果没有物理原因,即设备故障或通过负载过度使用无功功率,尽管它可能导致无功过量充电(RPEC)。由于这些费用可以延长PV装置的回报,因此本文旨在评估三个解决此问题的策略。第一次证明是最适合制度的策略是一种新的监管计划,用于DGCPS的消费者单位的无功监测。另外两个解决方案是基于来自光伏逆变器或电容器组的无功功率补偿的经典方法。对于这两个最后的解决方案,本文提供了一种创新和优化的操作方式,可以在实时测量效用测量的负载功率因数,最大限度地降低经济损失。 (c)2020 elestvier有限公司保留所有权利。

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