A. Shobole, Motuma Abafogi, Hammad Khalid, Yahia Amireh, Abdurrahman Zaim
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引用次数: 0
摘要
采用先进微处理器的保护继电器对电网至关重要,可利用高效的通信协议对故障情况做出快速可靠的响应。对各种故障的即时检测和响应对于将损害风险降至最低至关重要。数字继电器可以识别故障情况并触发断路器断开,从而防止对系统造成进一步损害。由于缺乏自主决策能力,现有的数字式继电器在网络配置和保护设置发生变化等情况下需要手动重新配置。当多个电源向电网供电时,这些继电器也不具备协调故障排除的能力。我们将分固件和硬件等不同文章,全面概述旨在开发基于多代理系统(MAS)的自适应继电保护装置的研究。第一部分将深入探讨这一创新型继电器的固件方面,重点介绍其自适应能力和开发过程中的主要考虑因素。第二部分将提供继电器硬件功能的详细设计说明。自适应数字继电器固件的设计和开发采用了 STM32MPU 多核高级微处理器。固件中包含多个继电保护 ANSI 代码、通信协议和基于 MAS 的自适应保护方案。
Multiagent System-Based Adaptive Numerical Relay Design and Development: Part I - Firmware
Protection relays that incorporate advanced microprocessors are vital to electrical grids, providing fast and reliable responses to faulty conditions using efficient communication protocols. Instant detection and response to various faults are essential to minimise the risk of damage. Numerical relays can identify faulty conditions and trigger circuit breakers to open, thus preventing further damage to the system. Due to the lack of autonomous decision-making capabilities, existing numerical relays require manual reconfiguration in situations such as a change in network configuration and protection settings. These relays also do not have the ability to coordinate fault clearance when multiple sources supply power to the grid. A comprehensive overview of the research aimed at developing a multiagent system (MAS)-based adaptive protection relay will be provided by dividing it into separate articles such as firmware and hardware. This first part delves into the firmware aspects of this innovative relay, highlighting its adaptive capabilities and key considerations in its development. The second part will provide detailed design descriptions for the hardware features of the relay. An STM32MPU multicore advanced microprocessor is utilised to design and develop the adaptive numerical relay firmware. It incorporates several protection relay ANSI codes, communication protocols, and MAS-based adaptive protection schemes as part of the firmware.