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Multi-agent systems applied to power loss minimization in distribution-level smart grid with dynamic load variation

机译:多主体系统应用于动态负载变化的配电级智能电网中的功耗最小化

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Modern distribution system are expected to provide new features such as taking advantage of Cyber-Physical Systems (CPS) - new equipment and devices embedded with sensors, network communication, and computational intelligence techniques to provide increased system performance and power quality. Among the performance improvement, the reduction of electrical losses is an important quality factor which is associated with energy efficiency. This paper presents a method based on Multi-agent Systems (MAS) that manages topology changes by switching operations to improve the system performance in dynamic scenario, where the power demand varies throughout the day. Experiments were performed allocating three different load consumer profiles (residential, commercial, and industrial) in two test systems with 12-bus and 16-bus, creating several scenarios. The agents were deployed in a set of small-sized single-board computers with low computational power to mimic CPS. The simulations has shown the success of the method on managing the decision making among different agents to provide the joint effort to manage the loss reduction on the network.
机译:预期现代配电系统将提供新功能,例如利用网络物理系统(CPS)–嵌入传感器,网络通信和计算智能技术的新设备和装置,以提高系统性能和电源质量。在性能改进中,减少电损耗是与能效相关的重要品质因数。本文提出了一种基于多代理系统(MAS)的方法,该方法通过切换操作来管理拓扑变化,以提高动态情况下的系统性能,在这种情况下,电力需求全天都在变化。在具有12总线和16总线的两个测试系统中分配了三个不同的负载使用者配置文件(住宅,商业和工业)进行了实验,从而创建了几种方案。这些代理程序部署在一组计算能力较低的小型单板计算机中,无法模拟CPS。仿真显示了该方法在管理不同代理之间的决策方面的成功,从而为管理网络上的损失减少提供了共同的努力。

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