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Impact of Advanced Vol- V Ar Control Devices on Increasing PV Hosting Capacity of Distribution Systems

机译:先进的Vol-V AR控制装置对分布系统PV托管能力的影响

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Adoption of renewable energies is on the rise all over the globe. Among renewable energy resources, solar Photovoltaic (PV) resources have gained a significant momentum in multiple parts of the world. Beside all the benefits renewable energy resources provide, they have also introduced new challenges, which must be addressed as soon as possible. This paper focuses on the mitigation of voltage issues caused by high penetration of PV resources. In this work, new Volt- V Ar Control (VVC) devices such as smart inverters and Dynamic VAr Controllers (DVCs) are selected and the interplay between them is investigated. Furthermore, the impact of these new VVC technologies on reducing voltage volatility and consequently increasing PV hosting capacity of distribution systems is assessed. To achieve those objectives, advanced Quasi-Static Time-Series (QSTS) simulations are performed in OpenDSS and controlled by Python. These powerful tools provide the opportunity to model new VVC devices, to implement advanced VVC schemes and smart functions, and to investigate the interaction between new VVC devices. Simulation results for select feeders show that by employing smart inverters and DVCs, existing PV hosting capacity of the considered Hawaiian distribution system can increase by 15% and 45% respectively compared to existing installed capacity. However, when both technologies are utilized, PV hosting increases by 60% for the select feeders, indicating that DVCs complement smart inverters capabilities.
机译:通过可再生能源是全球崛起的。在可再生能源资源中,太阳能光伏(PV)资源在世界多个地区获得了显着的势头。除了可再生能源资源的所有福利提供,他们还引入了新的挑战,必须尽快解决。本文侧重于PV资源高渗透引起的电压问题的减轻。在这项工作中,选择了新的Volt-V AR控制(VVC)诸如智能逆变器和动态VAR控制器(DVC)的设备,并研究了它们之间的相互作用。此外,评估了这些新的VVC技术对降低电压波动性并因此增加了分配系统的PV托管能力的影响。为了实现这些目标,在开关中执行先进的准静态时间序列(QST)模拟并由Python控制。这些强大的工具提供了建模新VVC设备的机会,实现高级VVC方案和智能功能,并调查新VVC设备之间的交互。选择进纸器的仿真结果表明,通过采用智能逆变器和DVC,与现有安装容量相比,通过采用智能逆变器和DVCS,考虑的夏威夷分配系统的PV托管能力分别可以增加15%和45%。然而,当使用这两种技术时,选择进纸器的PV托管增加了60%,表明DVC补充智能逆变器功能。

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