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Conceptual Design of an Online Estimation System for Stigmergic Collaboration and Nodal Intelligence on Distributed DC Systems

机译:分布式DC系统中Stigmergic协作和节点智能在线评估系统的概念设计

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摘要

The secondary level control of stand-alone distributed energy systems requires accurate online state information for effective coordination of its components. State estimation is possible through several techniques depending on the system's architecture and control philosophy. A conceptual design of an online state estimation system to provide nodal autonomy on DC systems is presented. The proposed estimation system uses local measurements - at each node - to obtain an aggregation of the system's state required for nodal self-control without the need for external communication with other nodes or a central controller. The recursive least-squares technique is used in conjunction with stigmergic collaboration to implement the state estimation system. Numerical results are obtained using a Matlab/Simulink model and experimentally validated in a laboratory setting. Results indicate that the proposed system provides accurate estimation and fast updating during both quasi-static and transient states.
机译:独立分布式能源系统的二级控制需要准确的在线状态信息,以有效协调其组件。根据系统的体系结构和控制原理,可以通过多种技术进行状态估计。提出了一种在线状态估计系统的概念设计,该系统可在DC系统上提供节点自主权。所提出的估计系统在每个节点上使用局部测量来获得节点自控所需的系统状态的汇总,而无需与其他节点或中央控制器进行外部通信。递归最小二乘技术与Stigmergic协作结合使用以实现状态估计系统。使用Matlab / Simulink模型可获得数值结果,并在实验室中进行了实验验证。结果表明,所提出的系统在准静态和瞬态状态下均可提供准确的估计和快速更新。

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