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Controlling aggregates of deferrable loads for power system regulation

机译:控制可递延负载的集合以进行电力系统调节

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This paper considers the role of a demand aggregator that manages a large number of consumer loads, with the objective of participating in the frequency regulation market. The key feature to be exploited is load deferrability in time, which enables the aggregator to adapt the consumption profile and thus reduce its own consumption of regulation, and even be a provider of regulation services to others. Rather than a microscopic model that considers individual loads and their scheduling, we consider here a macroscopic viewpoint drawn from fluid models of queueing systems. Here the state variable is the quantity of currently dispatchable loads, and the control input dictates the fraction of those which are currently active. The dynamics is a simple nonlinear ODE that allows us to design a controller with a feedforward term to track an external regulation reference, and a feedback term to reduce the impact of random load oscillations, in an agnostic way to the microscopic scheduling. The performance of this controller is evaluated by simulation using practical regulation signals.
机译:本文考虑了管理大量用户负载的需求聚合器的作用,目的是参与频率调节市场。要利用的关键功能是及时地延迟负载,这使聚合器可以调整消耗配置文件,从而减少自身的调节消耗,甚至可以成为其他调节服务的提供者。在这里,我们考虑的是从排队系统的流体模型得出的宏观观点,而不是考虑单个负载及其调度的微观模型。在这里,状态变量是当前可分派的负载量,控制输入决定了当前有效负载的比例。动力学是一个简单的非线性ODE,它使我们能够设计一种控制器,该控制器具有前馈项以跟踪外部调节参考,而反馈项则以不可知论的方式对微观调度进行跟踪,以减少随机负载振荡的影响。通过使用实际调节信号进行仿真来评估该控制器的性能。

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