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Novel architecture for integrated wide area protection and control

机译:用于集成广域保护和控制的新颖架构

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This paper firstly reviews the recent development in power system protection, with special attention paid to the wide-area and integrated protection, in order to look into future development of protection and control system for smart grids. The paper then mainly reports on the design of a novel architecture for the integration of protection and control for wide area power network. The concept of integrated wide area protection and control is introduced, in which a hierarchically coordinated system, supported by the specially designed real-time synchronized wide area communication network, provides the protection and control for wide area or regional power substations/plants and their associated power network. Within the architecture a specially designed integrated wide area protection and control information platform receives real-time synchronized data from the communication network to support the integration of protection and control at wide area/regional level. The data received from the platform includes the static, dynamic, transient measurement and the states of circuit breakers etc., valuable information is extracted from the data and allocated to various specially designed computation algorithms in the platform to perform advanced functions of protection and control for the power network. In the platform, the sets of data that need to be transferred and their transferring speed depend on application, for example, slow for contingency analysis, near real time for monitoring and real time for control or protection. On the other hand, the information is stored in a hierarchical manner instead of centralized one, which is comprised with the hierarchical protection and control system. Equipped with the latest high speed synchronized communication technology, integrated with the advanced protection techniques and the latest developments in control system, the system offers not only fast protection, but also complete control of entire power network. It also offers- a potential for merging the so called three line of defence into a unified system to more effectively ensure the reliable and safety operation of power grids. Within the architecture a cloud computing system is specially designed to implement a number of secondary functions for substations and power networks, such as the wide area fault location, fault line selection, power quality monitoring, protection settings, etc. The extended functions also include the equipment monitoring, life cycle and operation management. With the proposed cloud, the architecture of future substation equipment can be reshaped to provide a flexible framework for building interactive grid and improve the reliability and security of power grid.
机译:本文首先回顾了电力系统保护的最新发展,特别关注广域和综合保护,以期探讨智能电网保护与控制系统的未来发展。然后,本文主要报道了一种用于广域电网的保护与控制集成的新型架构的设计。引入了集成广域保护和控制的概念,其中分层协调的系统在经过特殊设计的实时同步广域通信网络的支持下,为广域或区域性变电站/电厂及其相关设备提供了保护和控制。电力网络。在该体系结构中,专门设计的集成广域保护和控制信息平台从通信网络接收实时同步数据,以支持广域/区域级别的保护和控制的集成。从平台接收的数据包括静态,动态,瞬态测量和断路器的状态等,从该数据中提取有价值的信息,并将其分配给平台中各种特殊设计的计算算法,以执行高级保护和控制功能。电力网络。在平台中,需要传输的数据集及其传输速度取决于应用程序,例如,对意外事件分析的响应速度慢,对监控的接近实时性以及对控制或保护的实时性。另一方面,信息以分层的方式存储,而不是集中式信息存储,而集中式信息包含在分层保护和控制系统中。该系统配备了最新的高速同步通信技术,并结合了先进的保护技术和控制系统的最新发展,不仅提供快速保护,而且还可以对整个电力网络进行完全控制。它还提供了将所谓的三道防线合并为一个统一系统以更有效地确保电网的可靠和安全运行的潜力。在该架构内,云计算系统经过专门设计,可实现变电站和电力网络的许多辅助功能,例如广域故障定位,故障线路选择,电能质量监控,保护设置等。扩展功能还包括:设备监控,生命周期和运营管理。借助提出的云,可以对未来的变电站设备的架构进行改造,从而为构建交互式电网提供灵活的框架,并提高电网的可靠性和安全性。

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