论文标题
分布式频率紧急控制,具有协调的边缘智能
Distributed Frequency Emergency Control with Coordinated Edge Intelligence
论文作者
论文摘要
制定有效的策略来快速支持网格频率,同时在严重的意外情况下最大程度地减少损失是电力系统的重要要求。虽然通常用于频率调节的分布式响应载荷需求,但很难以实用且具有成本效益的方式达到快速响应和全球准确性。在本文中,介绍了启用Things Inforets(IoT)系统的网络物理设计,称为Grid Sense。网格感利用大量分布式设备进行频率紧急支持。它具有基于协调的边缘智能的频率紧急控制的本地功率损失$ΔP$估计方法。专门设计的网格感知智能插座使用从控制中心发送的参数在当地检测频率干扰事件,以估算系统中的主动功率损失,并在严重的意外情况下尽快做出快速,准确的切换决策。基于修改的IEEE 24总线系统,进行了数值模拟和硬件实验,以证明在准确性和速度方面网格感的频率支持性能。结果表明,配备了局部$ΔP$估计频率控制方法的电网感可以准确,迅速地防止重大功率损耗后的频率下降。
Developing effective strategies to rapidly support grid frequency while minimizing loss in case of severe contingencies is an important requirement in power systems. While distributed responsive load demands are commonly adopted for frequency regulation, it is difficult to achieve both rapid response and global accuracy in a practical and cost-effective manner. In this paper, the cyber-physical design of an Internet-of-Things (IoT) enabled system, called Grid Sense, is presented. Grid Sense utilizes a large number of distributed appliances for frequency emergency support. It features a local power loss $ΔP$ estimation approach for frequency emergency control based on coordinated edge intelligence. The specifically designed smart outlets of Grid Sense detect the frequency disturbance event locally using the parameters sent from the control center to estimate active power loss in the system and to make rapid and accurate switching decisions soon after a severe contingency. Based on a modified IEEE 24-bus system, numerical simulations and hardware experiments are conducted to demonstrate the frequency support performance of Grid Sense in the aspects of accuracy and speed. It is shown that Grid Sense equipped with its local $ΔP$-estimation frequency control approach can accurately and rapidly prevent the drop of frequency after a major power loss.