Rashid Sara Mahmoudi
Faculty of Electrical and Computer Engineering, University of Tabriz, Tabriz, Iran.
ISA Trans. 2025 Mar;158:344-362. doi: 10.1016/j.isatra.2025.01.028. Epub 2025 Jan 18.
Microgrids play an important role in stabilizing the electrical grid and they are the best route to develop green and sustainable energy. Since microgrids are expanding rapidly, it is necessary to consider the related control issues including power quality, bidirectional power flow, voltage and frequency control, and stability analysis. One of the main measurement challenges is the communication delay. It means the delay in sending data from the sensor or measuring unit to the processing unit. The communication delay gets more important when the microgrid is widespread and complex. In this paper, a novel soft switching voltage control system is proposed to solve the voltage control problem of a widespread micro-grid while there are time-varying communication delays. The novel soft switching method is based on a static output feedback controller and deep neural networks. Another novelty of this paper is considering the 33-bus microgrid as a large-scale system that helps develop local and central controllers. The simulation's results show the effectiveness of a soft switching controller in the presence of dynamic time-varying communication delays. It means that while encountering static communication delays, the static output feedback controller without a soft switching method is sufficient in a large-scale microgrid.
微电网在稳定电网方面发挥着重要作用,并且是发展绿色可持续能源的最佳途径。由于微电网正在迅速扩张,有必要考虑相关控制问题,包括电能质量、双向潮流、电压和频率控制以及稳定性分析。主要测量挑战之一是通信延迟。它指的是从传感器或测量单元向处理单元发送数据时的延迟。当微电网分布广泛且复杂时,通信延迟变得更加重要。本文提出了一种新颖的软开关电压控制系统,以解决存在时变通信延迟的广泛微电网的电压控制问题。这种新颖的软开关方法基于静态输出反馈控制器和深度神经网络。本文的另一个新颖之处在于将33节点微电网视为一个大规模系统,这有助于开发本地和中央控制器。仿真结果表明了软开关控制器在存在动态时变通信延迟情况下的有效性。这意味着在遇到静态通信延迟时,在大规模微电网中,没有软开关方法的静态输出反馈控制器就足够了。