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A Distributed AGC Method considering Two-Channel Random Delays and Their Difference between Interconnected Power Systems

机译:考虑双通道随机延迟的分布式AGC方法及其在互联电力系统之间的区别

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摘要

With the emergence of the concept of smart grid, the networked automatic generation control (AGC) method has been more and more important for secondary frequency control due to its characteristics such as openness and flexibility. However, the networked AGC system also presents some defects such as time delays and packet dropouts. The existence of time delays makes the traditional AGC strategies more challenging. A novel AGC method is proposed in this paper to mitigate the negative effects of time delays. Firstly, a multiarea power system model is built under the consideration of two-channel time delays: from controller to actuator and from sensor to controller. More practically, the difference of delays between areas is also exhibited in the model. Thus, from the predictive characteristics of model predictive control (MPC), a method of selection with optimization is presented to obtain the appropriate control variable when delays exist. Furthermore, three cases, (a) no processing for delay, (b) control sequence selection, (c) control sequence selection with optimization, are analyzed. The frequency and area control error (ACE) performance are evaluated with step load perturbation and random load perturbation. The simulation results indicate that the system controlled by the proposed method has desired dynamic performances. Consequently, the feasibility and effectiveness of the proposed method are verified.
机译:随着智能电网概念的出现,由于其特点,如开放性和灵活性,网络自动生成控制(AGC)方法对二次频率控制越来越重要。但是,网络化的AGC系统还呈现了一些缺陷,例如时间延迟和数据包丢失。时间延迟的存在使得传统的AGC策略更具挑战性。本文提出了一种新的AGC方法,以减轻时间延迟的负面影响。首先,在考虑双通道时间延迟的考虑下建立了一个多体电系统模型:从控制器到执行器以及从传感器到控制器。更实际地,在模型中也展示了区域之间的延迟差异。因此,从模型预测控制(MPC)的预测特性,呈现了一种选择优化的方法以在存在延迟时获得适当的控制变量。此外,三种情况下,(a)没有处理延迟,(b)控制序列选择,(c)控制序列选择,通过优化选择。使用阶跃负载扰动和随机负荷扰动来评估频率和区域控制误差(ACE)性能。仿真结果表明,由所提出的方法控制的系统具有所需的动态性能。因此,验证了所提出的方法的可行性和有效性。

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