Multistage optimal placement of phasor measurement unit
Chaw Chuaong Shyam, Papu Rabha, Abhishek Kumar Sinha
Abstract
Chaw Chuaong Shyam, Papu Rabha, Abhishek Kumar Sinha
Abstract
This paper is concerned about the optimal allocation of Phasor Measurement Units and at the same time ensuring the complete network observability with the available Phasor Measurement Units. Due to large interconnection of the power system it is not possible to allocate Phasor Measurement Units at strategic location in one go. So, in this paper a multistage (three stages) optimal placement of Phasor Measurement Units method is proposed based on network connectivity information. This paper consist of two parts viz. Part 1 represents the optimal placement of Phasor Measurement Units considering the power system operating at normal condition and Part 2 represents the optimal placement of Phasor Measurement Units considering contingency cases like single line of the system or single Phasor Measurement Units of the system outages. In both these methods complete observability of power system is assured with the optimally placed Phasor Measurement Units.
OpenAlex reports 1 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
This paper is concerned about the optimal allocation of Phasor Measurement Units and at the same time ensuring the complete network observability with the available Phasor Measurement Units. Due to large interconnection of the power system it is not possible to allocate Phasor Measurement Units at strategic location in one go. So, in this paper a multistage (three stages) optimal placement of Phasor Measurement Units method is proposed based on network connectivity information. This paper consist of two parts viz. Part 1 represents the optimal placement of Phasor Measurement Units considering the power system operating at normal condition and Part 2 represents the optimal placement of Phasor Measurement Units considering contingency cases like single line of the system or single Phasor Measurement Units of the system outages. In both these methods complete observability of power system is assured with the optimally placed Phasor Measurement Units.
Key concepts: Phasor, Observability, Units of measurement, Phasor measurement unit, Electric power system, Computer science, Power (physics), Interconnection