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Synthesizing Distributed Energy Resources in Microgrids with Temporal Logic Specifications

机译:利用时间逻辑规范合成微电网中的分布式能源

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Grid supportive (GS) modes integrated within distributed energy resources (DERs) can improve the frequency response. However, synthesis of GS modes for guaranteed performance is challenging. Moreover, a tool is needed to handle sophisticated specifications from grid codes and protection relays. This paper proposes a model predictive control (MPC)-based mode synthesis methodology, which can accommodate the temporal logic specifications (TLSs). The TLSs allow richer descriptions of control specifications addressing both magnitude and time at the same time. The proposed controller will compute a series of Boolean control signals to synthesize the GS mode of DERs by solving the MPC problem under the normal condition, where the frequency response predicted by a reduced-order model satisfies the defined specifications. Once a sizable disturbance is detected, the pre-calculated signals are applied to the DERs. The proposed synthesis methodology is verified on the full nonlinear model in Simulink. A robust factor is imposed on the specifications to compensate the response mismatch between the reduce-order model and nonlinear model so that the nonlinear response satisfies the required TLS.
机译:集成在分布式能源(DER)中的网格支持(GS)模式可以改善频率响应。但是,为确保性能而综合使用GS模式是一项挑战。此外,需要一种工具来处理电网规范和保护继电器的复杂规格。本文提出了一种基于模型预测控制(MPC)的模式综合方法,该方法可以适应时间逻辑规范(TLS)。 TLS允许同时处理幅度和时间的控制规范的更丰富描述。拟议的控制器将计算一系列布尔控制信号,以通过在正常条件下求解MPC问题来合成DER的GS模式,在正常条件下,降阶模型预测的频率响应满足定义的规范。一旦检测到较大的干扰,便将预先计算的信号应用于DER。在Simulink中的完全非线性模型上验证了所提出的综合方法。规格上强加了一个稳健因素,以补偿降阶模型和非线性模型之间的响应不匹配,从而使非线性响应满足所需的TLS。

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