Improvement of the line losses, weaker buses and saddle-node-bifurcation points using reconfigurations of the identified suitable lines

P. Acharjee
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引用次数: 1

Abstract

For the planning, operation and design of the modern power systems, the effect of the network reconfiguration of the identified weaker lines are nowadays investigated. Gradually increasing the load, saddle-node bifurcation (SNB) is determined using modified continuation power flow (MCPF) algorithm. Judging three different sets of the security limits, the weaker buses are detected from the power flow solution at the SNB point. The three different reconfigurations are implemented on the identified weaker lines for the standard IEEE-14, 30 and 57-bus test systems separately. The optimal location and the suitable lines for the reconfiguration are demonstrated with the results. Using the network reconfiguration, the significant improvement of the SNB points or load margin, weaker buses, voltage profile, line losses for the different cases are proved showing results.
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通过重新配置已确定的合适线路,改善线路损耗、较弱总线和鞍节点分叉点
对于现代电力系统的规划、运行和设计,目前正在研究已识别的弱线路的网络重构的影响。在负荷逐渐增加的情况下,采用改进的连续潮流算法确定鞍节点分岔。判断三组不同的安全限制,从SNB点的功率流解决方案中检测到较弱的总线。三种不同的重新配置分别在标准IEEE-14、30和57总线测试系统的已识别较弱线路上实现。结果证明了重构的最佳位置和合适的线路。通过网络重构,证明了不同情况下SNB点或负载裕度、弱母线、电压分布、线路损耗的显著改善效果。
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来源期刊
International Journal of Power and Energy Conversion
International Journal of Power and Energy Conversion Energy-Energy Engineering and Power Technology
CiteScore
1.60
自引率
0.00%
发文量
8
期刊介绍: IJPEC highlights the latest trends in research in the field of power generation, transmission and distribution. Currently there exist significant challenges in the power sector, particularly in deregulated/restructured power markets. A key challenge to the operation, control and protection of the power system is the proliferation of power electronic devices within power systems. The main thrust of IJPEC is to disseminate the latest research trends in the power sector as well as in energy conversion technologies. Topics covered include: -Power system modelling and analysis -Computing and economics -FACTS and HVDC -Challenges in restructured energy systems -Power system control, operation, communications, SCADA -Power system relaying/protection -Energy management systems/distribution automation -Applications of power electronics to power systems -Power quality -Distributed generation and renewable energy sources -Electrical machines and drives -Utilisation of electrical energy -Modelling and control of machines -Fault diagnosis in machines and drives -Special machines
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