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A New Model Predictive Control Based Method for Control of Grid Connected Inverter Using Predictive Functional Control

机译:基于预测功能控制的模型预测控制新方法

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Smart energy grid technology plays a crucial role in expediting transition towards cleaner and better distributed energy sources. Nowadays, renewable energy has gained a lot of attention in order to increase efficiency and to reduce the environmental impact of energy consumption. The output power of most used renewable energies such as photovoltaic is DC. Therefore, the inverter must be used to convert the DC voltage to AC to be able to be used in the grid. Consequently, the inverters are important components of smart grids. This paper presents a new model predictive control (MPC) based algorithm using a predictive functional control method to control the voltage and current of the grid-connected inverter. In this mode, the inverter dictates the frequency and voltage of the main grid and inject the required active and reactive power to the grid. The grid voltage is a disturbance to the state-space model of the inverter. To verify the performance of the proposed method several simulations are carried out. The results confirm that the proposed method performs well, and it is robust against different situations.
机译:智能电网技术在加快向更清洁,更好分布的能源过渡方面发挥着至关重要的作用。如今,可再生能源已引起人们的广泛关注,以提高效率并减少能源消耗对环境的影响。光伏等最常用的可再生能源的输出功率为DC。因此,必须使用逆变器将直流电压转换为交流电压,才能在电网中使用。因此,逆变器是智能电网的重要组成部分。本文提出了一种新的基于模型预测控制(MPC)的算法,该算法使用预测功能控制方法来控制并网逆变器的电压和电流。在这种模式下,逆变器决定主电网的频率和电压,并将所需的有功和无功功率注入电网。电网电压是对逆变器状态空间模型的干扰。为了验证所提出方法的性能,进行了一些仿真。结果证实了该方法性能良好,并且在不同情况下均具有较强的鲁棒性。

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