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Advanced Control and System Integrity Protection Schemes of Croatian Power Transmission Network with Integrated Renewable Energy Sources

机译:具有集成可再生能源的克罗地亚电力传输网络的先进控制和系统完整性保护方案

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Liberalization of the electricity market and inevitable control of the electric power system (EPS) on the edge of its stability as a result brings major changes in control and protection technologies. Control and protection systems are becoming increasingly complex, using even more process information and faster communication links. Intelligent electronic devices (IEDs) that perform control and protection functions are also becoming more complex. They are being developed on a daily basis, and just as you install the latest version of the device the newer model becomes available on the market. One of the newer technologies that is also rapidly evolving and can improve control of the EPS at the edges of its stability is the synchronized phasor measurements technology (SPMT). Implementation possibilities of SPMT are wide and they can be classified into three basic groups: system monitoring, control and protection. This paper describes initial phase implementation of an advanced control system of power transmission network around wind farm Vratarusa (42 MW) in the Croatian EPS based on SPMT. Among other things, it also describes guidelines and future use of system integrity protection schemes (SIPS) like adaptive underfrequency load shedding scheme based on real time measurements of loads, system protection against overloading of power transmission lines, system breaker failure protection and system busbar protection.
机译:电力市场的自由化和电力系统(EPS)的不可避免地控制其稳定性的边缘,因此控制和保护技术的重大变化。控制和保护系统正在变得越来越复杂,使用更多的过程信息和更快的通信链路。执行控制和保护功能的智能电子设备(IED)也变得越来越复杂。他们正在每天开发,就像安装最新版本的设备一样,新的型号在市场上可用。也是在其稳定性边缘处快速发展并且可以改善其稳定性的eps控制的一种新技术是同步的相量测量技术(SPMT)。 SPMT的实施可能性很广,它们可以分为三个基本组:系统监控,控制和保护。本文介绍了基于SPMT的克罗地亚·埃普斯围绕风电场Vratarusa(42 MW)周围的电力传输网络先进控制系统的初始相位实施。除此之外,它还介绍了基于载荷的实时测量的自适应低度负载脱落方案的系统完整性保护方案(SIPS),系统保护对电力传输线的过载,系统断路器故障保护和系统母线保护等。

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