Optimal phasor measurement unit (PMU) placement involves the process of minimizing the number of PMU needed while ensuring entire power system network completely observable. This paper presents the improved binary particle swarm (IBPSO) method that converges faster and also manage to maximize the measurement redundancy compared to the existing BPSO method. This method is applied to IEEE-30 bus system for the case of considering zero-injection bus and its effectiveness is verified by the simulation results done by using MATLAB software
Conventional phasor measurement unit (PMU) placement methods normally use the number of PMU installa...
In order to monitor constantly power systems states, the accurate monitoring technique by Phasor Mea...
Modern power systems require advanced monitoring and control, a capability made possible by Phasor M...
A binary particle swarm optimization (BPSO) based methodology for the optimal placement of phasor me...
A binary particle swarm optimization (BPSO) based methodology for the optimal placement of phasor me...
This paper presents an improved method of binary particle swarm optimization (IBPSO) technique for o...
A binary particle swarm optimization (BPSO) based\ud methodology for the optimal placement of phasor...
Optimal phasor measurement units (PMUs) placement refers to the strategic placement of PMUs to achie...
This paper presents a methodology to determine the optimal location of phasor measurement units (PMU...
Abstract Large-scale power grid observability is still a challenge because of deteriorating infrastr...
Abstract Large-scale power grid observability is still a challenge because of deteriorating infrastr...
The phasor measurement units (PMUs) are very important tool for monitoring and control the power sys...
In today’s world, a Phasor Measurement Unit (PMU) is a crucial component of our power network for ma...
This paper presents a generalized optimal placement of Phasor Measurement Units (PMUs) considering p...
The new measurement devices such as phasor measurement units (PMUs), is considered to be an essentia...
Conventional phasor measurement unit (PMU) placement methods normally use the number of PMU installa...
In order to monitor constantly power systems states, the accurate monitoring technique by Phasor Mea...
Modern power systems require advanced monitoring and control, a capability made possible by Phasor M...
A binary particle swarm optimization (BPSO) based methodology for the optimal placement of phasor me...
A binary particle swarm optimization (BPSO) based methodology for the optimal placement of phasor me...
This paper presents an improved method of binary particle swarm optimization (IBPSO) technique for o...
A binary particle swarm optimization (BPSO) based\ud methodology for the optimal placement of phasor...
Optimal phasor measurement units (PMUs) placement refers to the strategic placement of PMUs to achie...
This paper presents a methodology to determine the optimal location of phasor measurement units (PMU...
Abstract Large-scale power grid observability is still a challenge because of deteriorating infrastr...
Abstract Large-scale power grid observability is still a challenge because of deteriorating infrastr...
The phasor measurement units (PMUs) are very important tool for monitoring and control the power sys...
In today’s world, a Phasor Measurement Unit (PMU) is a crucial component of our power network for ma...
This paper presents a generalized optimal placement of Phasor Measurement Units (PMUs) considering p...
The new measurement devices such as phasor measurement units (PMUs), is considered to be an essentia...
Conventional phasor measurement unit (PMU) placement methods normally use the number of PMU installa...
In order to monitor constantly power systems states, the accurate monitoring technique by Phasor Mea...
Modern power systems require advanced monitoring and control, a capability made possible by Phasor M...