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Multiagent systems application for the smart grid protection

机译:智能电网保护的多验系统应用

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摘要

The smart power grid blends the bidirectional energy with information flow. Compared to the traditional power grid, it requires more intelligent and faster control, protection, automation, and communication techniques. Ultimately, power system protection, fault location, and isolation have to go through an immense modernization process since the previously used protection techniques are no longer usable in the smart grid. This is due to the bidirectional flow of energy and dynamics of the network configuration in the smart grid. Multiagent Systems (MAS) techniques can enable the power system to become smarter, reliable, selfhealing, and robust. Its decentralized nature and operational robustness make the MAS application a leading technology. In this paper, the MAS architecture that suits the smart grid application is proposed. Besides, a detailed systematic review on the application of MAS to smart grid protection is conducted. The MAS application for self-healing of the smart grid through Fault Location, Isolation, and Service Restoration (FLISR) is also investigated. Furthermore, based on the MAS architecture, fault identification technique, simulation, and verification methods implemented, a comparison is made among the ongoing research activities on power system protection and FLISR. Consequently, the research gap on power system protection, FLISR, and selfhealing is indicated. Finally, the use of IEC 61850 for implementing the MAS technique is discussed. As a result, the use of MAS for adaptive smart grid protection, the challenges in the implementation of the communication among the agents and outside laboratory application of the MAS for the power systems are the research topics that require further work.
机译:智能电网与信息流混合双向能量。与传统电网相比,它需要更智能和更快的控制,保护,自动化和通信技术。最终,由于先前使用的保护技术在智能电网中不再可用,因此最终,电力系统保护,故障位置和隔离必须经过巨大的现代化过程。这是由于智能电网中的网络配置的能量和动态的双向流动。多透系统(MAS)技术可以使电力系统变得更聪明,可靠,自我热衷和稳健。其分散性的性质和运营稳健性使MAS应用成为领先的技术。本文提出了适合智能电网应用的MAS架构。此外,对MAS应用于智能电网保护的详细系统审查。还研究了通过故障定位,隔离和服务恢复(FLISR)进行智能电网自我修复的MAS应用。此外,基于实施的MAS架构,故障识别技术,仿真和验证方法,在电力系统保护和FLISR的持续研究活动中进行了比较。因此,指出了电力系统保护,FLISR和体力的研究差距。最后,讨论了使用IEC 61850来实现MAS技术。结果,使用MAS进行适应性智能电网保护,在电力系统外部的代理商和实验室应用中的通信中实施的挑战是需要进一步工作的研究主题。

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