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Integrating control and scheduling of distributed energy resources over networks

机译:通过网络集成控制和调度分布式能源

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This paper presents an integrated approach for the control and scheduling of distributed energy resources (DERs) that are managed by a central supervisor over a resource-constrained communication network. The objective of this approach is to enhance the performance and disturbance-handling capabilities of the DERs while keeping the communication requirements with the supervisor to a minimum in order to reduce the susceptibility of the DERs to communication outages. To this end, the rate of data transfer from the DERs to the supervisor is initially minimized by embedding in the supervisor a set of dynamic models that are used to generate the necessary control action when measurements are not transmitted over the network, and then updating the models' states at discrete time instances. Only a subset of the DERs are allowed to transmit their data at any given time to provide updates to their target models according to a certain scheduling strategy. By formulating the networked closed-loop system as a hybrid system, an explicit characterization of the interdependence between the performance of the DERs, the communication rate, the transmission schedule and times, and the plant-models mismatch is obtained. It is shown that by judicious selection of the transmission schedule and models, it is possible to optimize the performance of the DERs while simultaneously reducing network utilization beyond what is possible with concurrent transmission configurations. Finally, the results are demonstrated through an application to a collection of solid oxide fuel cells in a distributed power network.
机译:本文提出了一种用于控制和调度分布式能源资源(DER)的集成方法,该方法由中央主管通过资源受限的通信网络进行管理。这种方法的目的是增强DER的性能和干扰处理能力,同时将与管理者的通信需求降至最低,从而降低DER对通信中断的敏感性。为此,首先通过将一组动​​态模型嵌入到管理器中来最大程度地减少从DER到管理器的数据传输速率,该模型将用于在未通过网络传输测量时生成必要的控制动作,然后更新离散时间实例的模型状态。在任何给定时间,仅允许DER的子集传输其数据,以根据某种调度策略为其目标模型提供更新。通过将网络闭环系统公式化为混合系统,可以明确表征DER性能,通信速率,传输时间表和时间与工厂模型不匹配之间的相互依赖性。结果表明,通过明智地选择传输时间表和模型,可以优化DER的性能,同时将网络利用率降低到超过并行传输配置所能达到的水平。最后,通过将其应用到分布式电源网络中的固体氧化物燃料电池集合中,证明了结果。

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