The importance of Power Hardware-in-the-Loop (PHIL) experiments is rising more and more over the last decade in the field of power system and components testing. Due to the bidirectional exchange between virtual and physical systems, a true-to-reality interface is essential; however, linking several dynamic systems, stability issues can challenge the experiments, the components under test, and the individuals performing the experiments. Over the time, several interface algorithms (IA) have been developed and analyzed, each having different advantages and disadvantages in view of combining virtual simulations with physical power systems. Finally, IA are very specific to the kind of PHIL experiment. This paper investigates the operational ran...
Power hardware-in-the-loop (PHIL) systems are advanced, real-time platforms for combined software an...
Share of distributed generation in grid system is increasing in time. In conventional generation, ro...
In power hardware in the loop (PHIL) simulations, a real-time simulated power system is interfaced t...
The importance of Power Hardware-in-the-Loop (PHIL) experiments is rising more and more over the las...
The use of Power-Hardware-In-the-Loop (PHIL) system studies is on the rise, in simulation and valida...
In this paper, to extend the range of Power hardware-in-the-loop (PHIL) simulations into dynamically...
This Paper discusses Power Hardware-in-the-Loop simulations from an important point of view: an intr...
Power-Hardware-In-the-Loop (PHIL) simulations are increasingly useful for the design and validation ...
A novel power hardware-in-the-loop interface algorithm, the Virtual Shifting Impedance, is developed...
The usual practice to study a large power system is through digital computer simulation. However, th...
A virtual power system can be interfaced with a physical system to form a power hardware-in-the-loop...
Power hardware-in-the-loop (PHIL) simulation leverages the advanced real-time emulation based techni...
Evaluating the power electronics behavior in real grid conditions is challenging. In simulation, lar...
Currently, with the rapid advancement in technology, it has become increasingly common for companies...
In power-hardware-in-the-loop (PHIL) digital simulation testing, a power device, also known as devic...
Power hardware-in-the-loop (PHIL) systems are advanced, real-time platforms for combined software an...
Share of distributed generation in grid system is increasing in time. In conventional generation, ro...
In power hardware in the loop (PHIL) simulations, a real-time simulated power system is interfaced t...
The importance of Power Hardware-in-the-Loop (PHIL) experiments is rising more and more over the las...
The use of Power-Hardware-In-the-Loop (PHIL) system studies is on the rise, in simulation and valida...
In this paper, to extend the range of Power hardware-in-the-loop (PHIL) simulations into dynamically...
This Paper discusses Power Hardware-in-the-Loop simulations from an important point of view: an intr...
Power-Hardware-In-the-Loop (PHIL) simulations are increasingly useful for the design and validation ...
A novel power hardware-in-the-loop interface algorithm, the Virtual Shifting Impedance, is developed...
The usual practice to study a large power system is through digital computer simulation. However, th...
A virtual power system can be interfaced with a physical system to form a power hardware-in-the-loop...
Power hardware-in-the-loop (PHIL) simulation leverages the advanced real-time emulation based techni...
Evaluating the power electronics behavior in real grid conditions is challenging. In simulation, lar...
Currently, with the rapid advancement in technology, it has become increasingly common for companies...
In power-hardware-in-the-loop (PHIL) digital simulation testing, a power device, also known as devic...
Power hardware-in-the-loop (PHIL) systems are advanced, real-time platforms for combined software an...
Share of distributed generation in grid system is increasing in time. In conventional generation, ro...
In power hardware in the loop (PHIL) simulations, a real-time simulated power system is interfaced t...