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Hardware in the loop simulation of DG integration to the distribution grid using RTDS and dSPACE

机译:使用RTD和DSPACE的DG集成的LOOP仿真中的硬件

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This paper aims at studying flutuations in energy conversion of a Photovoltaic (PV) system and its effects in the electric grid using real time simulation. The implemented simulation system consists of PV plants, power converters, variable load and electrical grid have been implemented in RTDS, while the control is run from a dSPACE platform. Load models have been developed based on actual demand profiles from three different distribution feeders from the City of Leopoldina, in the state of Minas Gerais. Measurement data from the feeders have been taken with an intervall of 15 minutes, totalizing a measurement time of 24 hours. Solar radiation data used in the PV models has been measured at the Solar Laboratory - Universidade Federal de Juiz de Fora, also for a 24-hour period. The purpose of this study is to run a hardware in the loop simulation, combining RTDS and dSPACE, which is a digital controller. With this real time - hardware in the loop arrangement, it is possible to investigate the system behavior with the power injected by the PV system, including the control of the inverter used to couple the different PV plants to the grid. Results show a comparison among the active and reactive power injected by the PV systems and the grid, and the power consumed by the loads.
机译:本文旨在使用实时模拟研究光伏(PV)系统的能量转换和其在电网中的效果中的烟道。实施的仿真系统由PV工厂,功率转换器,可变负载和电网组成,在RTD中实现,而控制则从DSPACE平台运行。负载模型是基于来自莱奥斯·格雷萨(Leopoldina)市的三种不同配电饲养者的实际需求型材开发的。来自馈线的测量数据已被捕获,血小段为15分钟,累计24小时的测量时间。在光伏型号中使用的太阳辐射数据已经在太阳能实验室 - 媒体上的Federal de Juiz de Fora中测量,也达到了24小时。本研究的目的是在环路仿真中运行硬件,结合RTD和DSPACE,即数字控制器。通过这种实时 - 在循环布置中的硬件,可以使用PV系统注入的电源来研究系统行为,包括用于将不同的PV工厂连接到网格的逆变器的控制。结果表明,光伏系统和电网注入的主动和无功功率的比较,以及负载消耗的功率。

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