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FPGA-Based Design of Grid Friendly Appliance Controller

机译:基于FPGA的网格友好型设备控制器设计

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This paper presents a FPGA (field programmable gate array)-based design of Grid Friendly Appliance (GFA) controller. A GFA controller can monitor the frequency of the power system and switch on or off the electrical appliance accordingly, to support the stability of the power system. In this paper, FPGA chip is adopted to develop GFA controller for real-time applications. The proposed method detects the power system frequency by a digital phase-locked loop (PLL), and compares the frequency with a threshold. If the frequency drops below the threshold, the GFA controller output a switching off signal to shed some load. In order to compensate the trigging response delay, a proportional-derivative (PD) predictor is designed for the controller. The proposed method is validated by the co-simulation results of Quartus II and Matlab. The hardware-based GFA controller is developed in Quartus II, and the frequency response model is developed in Matlab software, separately. The co-simulation results show the effectiveness of the proposed method.
机译:本文提出了一种基于网格(现场可编程门阵列)的网格友好型设备(GFA)控制器设计。 GFA控制器可以监视电源系统的频率并相应地打开或关闭电器,以支持电源系统的稳定性。本文采用FPGA芯片开发用于实时应用的GFA控制器。所提出的方法通过数字锁相环(PLL)检测电力系统的频率,并将该频率与阈值进行比较。如果频率下降到阈值以下,则GFA控制器输出关闭信号以减轻一些负载。为了补偿触发响应延迟,为控制器设计了比例微分(PD)预测器。 Quartus II和Matlab的联合仿真结果验证了该方法的有效性。基于硬件的GFA控制器是在Quartus II中开发的,而频率响应模型是在Matlab软件中开发的。联合仿真结果表明了该方法的有效性。

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