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A real-time co-simulation platform for distribution grid voltage control

机译:用于配电网电压控制的实时协同仿真平台

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The study aims to develop a real-time co-simulation testing platform for power system studies and provides an example application of a model-driven voltage controller in a distribution grid equipped with medium scale Photovoltaic (PV) generation. The platform consists of the Real-Time Digital Simulator (RTDS) connected by the TCP/IP protocol to MATLAB software. The RTDS device simulates dynamic behaviour of a real grid with 3.15MWp of PV generation while the MATLAB environment is used for fast prototyping and execution of a control algorithm. Furthermore, a novel voltage control method is applied to counteract voltage variations caused by fluctuation of PV generation. The novel method relies on predictions of the grid behaviour and chooses coordinated control strategies to satisfy regulation criteria. In result, the developed co-simulator allows demonstrating that it is possible to predict grid conditions in real-time and to apply a modern controller which makes use of computation power available in contemporary desktop computers.
机译:该研究旨在开发一个用于电力系统研究的实时协同仿真测试平台,并提供模型驱动的电压控制器在配备中型光伏(PV)发电的配电网中的示例应用。该平台包括通过TCP / IP协议连接到MATLAB软件的实时数字仿真器(RTDS)。 RTDS设备使用3.15MWp的PV生成来模拟真实电网的动态行为,而MATLAB环境则用于快速原型设计和控制算法的执行。此外,一种新颖的电压控制方法被应用于抵消由PV产生的波动引起的电压变化。该新方法依赖于电网行为的预测,并选择协调控制策略来满足调节标准。结果,开发的协同仿真器可以证明可以实时预测电网状况并应用现代控制器,该控制器可以利用当代台式计算机中可用的计算能力。

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