Observer design for boundary coupled PDEs: Application to thermostatically controlled loads in smart grids

S. Moura, J. Bendtsen, V. Ruiz
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引用次数: 38

Abstract

This paper develops methods for state estimation of aggregated thermostatically controlled loads (TCLs) in smart grids, via partial differential equation (PDE) techniques. TCLs include on/off controlled devices, such as heat pumps, HVAC systems, and deep freezers. Control of aggregated TCLs provides a promising opportunity to mitigate the mismatch between power generation and demand, thus enhancing grid reliability and enabling renewable energy penetration. However, persistent communication between thousands of TCLs to a central server can be prohibitive. To this end, this paper focuses on designing a state estimation scheme for a PDE-based model of aggregated TCLs, thus reducing the required communication. First, a two-state linear hyperbolic PDE model for homogenous TCL populations is presented. This model is extended to heterogeneous populations by including a diffusive term. Next, a state observer is derived, which uses only measurements of how many TCLs turn on/off at any given time. The design is proven to be exponentially stable via backstepping techniques. Finally, the observer's properties are demonstrated via simulation examples. The estimator provides system-critical information for power system monitoring and control.
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边界耦合偏微分方程的观测器设计:在智能电网恒温控制负荷中的应用
本文利用偏微分方程(PDE)技术,研究了智能电网中总体恒温控制负荷(tcl)的状态估计方法。tcl包括开/关控制设备,如热泵,暖通空调系统和深冷柜。控制总体tcl提供了一个有希望的机会,可以缓解发电和需求之间的不匹配,从而提高电网的可靠性,实现可再生能源的渗透。但是,数千个tcl与中央服务器之间的持久通信可能是令人望而却步的。为此,本文重点设计了一种基于pde的聚合tcl模型的状态估计方案,从而减少了所需的通信。首先,提出了一种齐次TCL种群的双态线性双曲PDE模型。通过加入扩散项,将该模型扩展到异质种群。接下来,导出一个状态观测器,它只使用在任何给定时间有多少tcl打开/关闭的测量。通过反步技术证明了该设计具有指数稳定性。最后,通过仿真实例对观测器的特性进行了验证。该估计器为电力系统的监测和控制提供系统关键信息。
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