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首页> 外文期刊>Journal of Electrical & Electronic Systems >An Advanced Protection Scheme to Avert Blackouts due to Transmission Network Overload
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An Advanced Protection Scheme to Avert Blackouts due to Transmission Network Overload

机译:避免由于传输网络过载而造成的停电的高级保护方案

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The Uganda power network has suffered various transformer overloads which have reduced power availability and utility income generation. Although frequency monitoring ensures system stability and calls for the Under Frequency Load Shedding scheme, other conditions that threaten power system stability like the loss of a tie line, overload trip of a power transformer, and overload trip of a transmission line need to be automated as well. This will not only improve reliability and continuity of service but also fast decision making, reduce the blackout zone, unnecessary load shedding, and minimal downtime. This paper presents a load management scheme that performs automatic load monitoring and feeder restoration by strictly following the set threshold values using PCM600, an ABB tool. The 11KV feeder load shedding hierarchy was strictly selected according to utility income-priority, strategic supply and safety. The logic configuration from PCM600 was validated and the Generic Object Oriented Substation Events (GOOSE) report was published. The Configured IED Description (CID) file from each IED (in PCM600) was saved in Substation Configuration Language (SCL) format and imported into IEDScout to simulate the IEC61850 communication. The simulation using IEDScout achieved a 500ms GOOSE messaging sequence and the traffic on the Ethernet cable was captured and analyzed using WireShark, a graphic user interface network protocol. A cost benefit ratio of 1.647 (greater than 1) was obtained to declared economically acceptable. This design caters for emergencies, i.e. very rare, non-continuous but possible and very catastrophic occurrences on the power system. Therefore this research provides an efficient solution to transmission line and transformer overload by automating downstream load-shedding and load restoration.
机译:乌干达电网遭受各种变压器过载,这降低了电力供应和公用事业收入。尽管频率监控可确保系统稳定性并要求采用“欠载减载”方案,但其他一些会威胁到电力系统稳定性的条件(如失去联络线,电力变压器的过载跳闸和传输线的过载跳闸)需要自动进行,因为好。这不仅可以提高服务的可靠性和连续性,还可以加快决策速度,减少停电区域,减少不必要的负载并减少停机时间。本文提出了一种负载管理方案,该方案通过使用ABB工具PCM600严格遵循设置的阈值来执行自动负载监视和馈线恢复。严格根据公用事业收入优先,战略供应和安全性选择11KV馈线减载等级。验证了PCM600的逻辑配置,并发布了通用面向对象变电站事件(GOOSE)报告。来自每个IED(在PCM600中)的已配置IED描述(CID)文件以变电站配置语言(SCL)格式保存,并导入到IEDScout中以模拟IEC61850通信。使用IEDScout进行的仿真实现了500ms的GOOSE消息传递序列,并使用WireShark(图形用户界面网络协议)捕获并分析了以太网电缆上的流量。获得了1.647(大于1)的成本效益比,表明其在经济上可接受。这种设计迎合了紧急情况,即电力系统上非常罕见,不连续但可能发生的灾难性事件。因此,本研究通过自动化下游负荷的减少和负荷的恢复,为输电线路和变压器的过载提供了有效的解决方案。

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