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Hardware-in-the-loop Testing of Signal Temporal Logic Frequency Control in a Microgrid

机译:微电网中信号时间逻辑频率控制的硬件在环测试

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This paper presents a hardware-in-the-loop (HITL) testing and lessons learned for a signal temporal logic (STL) frequency control in a microgrid setting. In contrast to most, if not all, traditional control mechanisms, the STL control allows for including temporal constraints in the control formulation to handle sophisticated specifications from grid codes and protection relays. This feature provides richer descriptions of control specifications to address both magnitude and time simultaneously, hence a valuable tool for power system operation and control. An ultra-low voltage (24V) HITL microgrid platform consisting of two type-3 wind turbine generators and one diesel generator is used to test the proposed STL frequency control. In experimental case studies, we demonstrate that the HITL frequency responses closely match the simulated ones and strictly satisfy the designed STL control specifications.
机译:本文介绍了在微电网环境中进行信号暂态逻辑(STL)频率控制的硬件在环(HITL)测试和经验教训。与大多数(如果不是全部)传统控制机制相比,STL控制允许在控制公式中包括时间约束,以处理来自电网代码和保护继电器的复杂规范。此功能提供了对控制规格的更丰富描述,以同时处理幅度和时间,因此是电力系统运行和控制的宝贵工具。由两台3型风力发电机和一台柴油发电机组成的超低压(24V)HITL微电网平台用于测试所建议的STL频率控制。在实验案例研究中,我们证明了HITL频率响应与模拟频率响应紧密匹配,并严格满足设计的STL控制规范。

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