Abstract:
Channel Components Transform (CCT) is a recently developed technique to decouple interconnected power networks. This paper aims to further explore the CCT and extend its ...Show MoreMetadata
Abstract:
Channel Components Transform (CCT) is a recently developed technique to decouple interconnected power networks. This paper aims to further explore the CCT and extend its applications. Methods and algorithms are proposed to extend its application in identifying the critical generators and branches of a network from the voltage stability perspective. The proposed methods are verified by case studies conducted on multiple test systems. This paper also demonstrates the capability of the CCT to work properly when a limited number of phasor measurement units are available. For this purpose, a strategy is proposed to determine the number and location of PMU installations that are sufficient to track the modes of voltage collapse and associated critical components. The proposed allocation strategy is examined through case studies of an actual power system.
Published in: IEEE Transactions on Smart Grid ( Volume: 4, Issue: 2, June 2013)
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- IEEE Keywords
- Index Terms
- Voltage Regulation ,
- Power System ,
- Allocation Scheme ,
- Phasor Measurement Units ,
- Stability Of System ,
- Results Of Method ,
- Voltage Drop ,
- Magnitude Of Increase ,
- Highest Increase ,
- Base Case ,
- Marginal Increase ,
- Ranking Method ,
- Phase Voltage ,
- Bus Voltage ,
- Voltage Magnitude ,
- Transmission Path ,
- Critical Path ,
- Critical Load ,
- Nominal Power ,
- Load Buses ,
- Effect Of Different Values ,
- Branching System ,
- Bus Network ,
- Voltage Field ,
- System Topology
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Voltage Regulation ,
- Power System ,
- Allocation Scheme ,
- Phasor Measurement Units ,
- Stability Of System ,
- Results Of Method ,
- Voltage Drop ,
- Magnitude Of Increase ,
- Highest Increase ,
- Base Case ,
- Marginal Increase ,
- Ranking Method ,
- Phase Voltage ,
- Bus Voltage ,
- Voltage Magnitude ,
- Transmission Path ,
- Critical Path ,
- Critical Load ,
- Nominal Power ,
- Load Buses ,
- Effect Of Different Values ,
- Branching System ,
- Bus Network ,
- Voltage Field ,
- System Topology
- Author Keywords