Conventional phasor measurement unit (PMU) placement methods normally use the number of PMU installations as the objective function which is to be minimized. However, the cost of one installation of PMU is not always the same in different locations. It depends on a number of factors. One of these factors is taken into account in the proposed PMU placement method in this paper, which is the number of adjacent branches to the PMU located buses. The concept of full topological observability is adopted and a version of binary particle swarm optimization (PSO) algorithm is utilized. Results from the test on a 17-bus system are demonstrated
This paper proposes an optimal Phasor Measurement Unit (PMU) placement method based on a modified ve...
This paper presents a methodology to determine the optimal location of phasor measurement units (PMU...
In today’s world, a Phasor Measurement Unit (PMU) is a crucial component of our power network for ma...
This paper presents an improved method of binary particle swarm optimization (IBPSO) technique for o...
A binary particle swarm optimization (BPSO) based methodology for the optimal placement of phasor me...
A binary particle swarm optimization (BPSO) based\ud methodology for the optimal placement of phasor...
Phasor measurement units (PMUs) are considered as a promising tool for future monitoring, protection...
A binary particle swarm optimization (BPSO) based methodology for the optimal placement of phasor me...
The phasor measurement units (PMUs) are very important tool for monitoring and control the power sys...
This paper presents a generalized optimal placement of Phasor Measurement Units (PMUs) considering p...
Optimal phasor measurement units (PMUs) placement refers to the strategic placement of PMUs to achie...
Optimal phasor measurement unit (PMU) placement involves the process of minimizing the number of PMU...
Optimal phasor measurement units (PMUs) placement involves the process of minimizing the number of P...
Identification of optimal locations to deploy the phasor measurement units (PMUs) is a preliminary t...
AbstractOptimal phasor measurement units (PMUs) placement involves the process of minimizing the num...
This paper proposes an optimal Phasor Measurement Unit (PMU) placement method based on a modified ve...
This paper presents a methodology to determine the optimal location of phasor measurement units (PMU...
In today’s world, a Phasor Measurement Unit (PMU) is a crucial component of our power network for ma...
This paper presents an improved method of binary particle swarm optimization (IBPSO) technique for o...
A binary particle swarm optimization (BPSO) based methodology for the optimal placement of phasor me...
A binary particle swarm optimization (BPSO) based\ud methodology for the optimal placement of phasor...
Phasor measurement units (PMUs) are considered as a promising tool for future monitoring, protection...
A binary particle swarm optimization (BPSO) based methodology for the optimal placement of phasor me...
The phasor measurement units (PMUs) are very important tool for monitoring and control the power sys...
This paper presents a generalized optimal placement of Phasor Measurement Units (PMUs) considering p...
Optimal phasor measurement units (PMUs) placement refers to the strategic placement of PMUs to achie...
Optimal phasor measurement unit (PMU) placement involves the process of minimizing the number of PMU...
Optimal phasor measurement units (PMUs) placement involves the process of minimizing the number of P...
Identification of optimal locations to deploy the phasor measurement units (PMUs) is a preliminary t...
AbstractOptimal phasor measurement units (PMUs) placement involves the process of minimizing the num...
This paper proposes an optimal Phasor Measurement Unit (PMU) placement method based on a modified ve...
This paper presents a methodology to determine the optimal location of phasor measurement units (PMU...
In today’s world, a Phasor Measurement Unit (PMU) is a crucial component of our power network for ma...