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Applications of internet of things (IOT) to improve the stability of a grid connected power system using interline power flow controller

机译:物联网(物联网)的应用,提高了使用Interline Power Flow Controller的网格连接电力系统的稳定性

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Using Internet of Things (IoT) technology in the clever network is an essential method to fast active the information of control Grid-system. Also, the grid system is valuable aimed at the compelling administration of the power framework foundation. This paper deals with a logical approach to design an Interline Power Flow Controller (IPFC) for a grid-connected several-line power scheme to improve the scheme strength and to improve the congestion management in a grid by considering the power flow among the multi-line, IPFC goes to a sequence of paying flexible alternating current transmission system (FACTS) device and it takes the capability toward control the power stream in multi-line transfer organizations.. The Distributed Interline Power Flow Controller involves the series and shunt converters in different transmission lines that are between related utilizing a run of the DC connector. In the transmission line, is the IPFC considered for the compensation and control of power flow in a multi-line transmission system. Every converter can give plan reactive compensation offits line also with the frequency. As the converters can exchange dynamic power through their essential DC interface, it can similarly give a frequency of the current. The highest objective is to improve the power flow in transmission lines and also to maintain the system stability at the buses, and it is achieved by developing an IPFC controller along with genetic algorithm. A Simulink model of an Interline Power Flow Controller based several-machine framework alongside genetic algorithm is developed, and its outcomes were compared with the conventional scheme for tuning the proposed controller to confirm their effectiveness and robustness. It also explains the optimization technique in multi-machine power system with an IPFC using GA. Concentrated on the normal for the development and improvement of the brilliant matrix, this paper presented the use of IoT in web-based checking framework of grid-connected power system using IOT. (C) 2020 Elsevier B.V. All rights reserved.
机译:在巧妙的网络中使用物联网(IoT)技术是快速激活控制网格系统信息的基本方法。此外,电网系统是有价值的,旨在令人信服地管理动力架构基础。本文涉及设计一个用于网格连接的多线电源方案的逻辑方法来设计一个相互电力流量控制器(IPFC),以提高方案强度,并通过考虑多个 - 的电流来改善网格中的拥塞管理线路,IPFC转到了一系列支付柔性交流传输系统(事实)设备,并且它需要控制多线传输组织中的电力流。分布式的相互线电流控制器涉及串联和分流转换器利用DC连接器的运行之间的相关传输线。在传输线中,是考虑的IPFC,用于多线传输系统中的功率流量的补偿和控制。每个转换器都可以为平面反应补偿偏离线路频率。随着转换器可以通过其基本直流接口交换动态功率,它可以类似地提供电流的频率。最高目标是改善传输线中的功率流量,并且还可以在总线上保持系统稳定性,并且通过开发IPFC控制器以及遗传算法来实现。开发了一种基于遗传算法的基于几机框架的Interline Power Flow控制器的Simulink模型,并将其结果与传统方案进行了比较,用于调整所提出的控制器以确认其有效性和鲁棒性。它还用GA用IPFC解释了多机电系统中的优化技术。专注于正常的开发和改进辉煌矩阵,本文介绍了IOT在基于网络的基于Web的检查框架中使用IOT。 (c)2020 Elsevier B.v.保留所有权利。

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