In this paper, to extend the range of Power hardware-in-the-loop (PHIL) simulations into dynamically changing systems, i.e., setups where during the test scenario the ratio of impedance of the simulation and hardware under test changes, an adaptive Ideal Transformer Method (ITM) interface algorithm is proposed. The method incorporates voltage and current sources at both sides of the interface (simulation and hardware), a switch and an online stability assessment monitoring for the operation of the switch. Two different study cases have been developed for the assessment of the performance of the proposed adaptive ITM interface algorithm in a simulation environment. First, a simple test case with a variable resistive hardware under test has b...
The subject of this doctoral thesis is the use of real-time simulation and specifically Power Hardwa...
The energy systems are evolving towards the wide integration of power electronics-based technologies...
The hardware under test (HUT) in a power hardware in the loop (PHIL) implementation can have a signi...
A virtual power system can be interfaced with a physical system to form a power hardware-in-the-loop...
The use of Power-Hardware-In-the-Loop (PHIL) system studies is on the rise, in simulation and valida...
The importance of Power Hardware-in-the-Loop (PHIL) experiments is rising more and more over the las...
A novel power hardware-in-the-loop interface algorithm, the Virtual Shifting Impedance, is developed...
Evaluating the power electronics behavior in real grid conditions is challenging. In simulation, lar...
The usual practice to study a large power system is through digital computer simulation. However, th...
Driven by the target of decarbonization through eliminating carbon emissions and developing a renewa...
Power hardware-in-the-loop (PHIL) systems are advanced, real-time platforms for combined software an...
The stability and accuracy of power hardware-in-the-loop (PHIL) setups are sensitive to and deterior...
In power hardware in the loop (PHIL) simulations, a real-time simulated power system is interfaced t...
In power hardware in the loop (PHIL) simulations, a real-time simulated power system is interfaced t...
The hardware under test (HUT) in a power hardware in the loop (PHIL) implementation can have a signi...
The subject of this doctoral thesis is the use of real-time simulation and specifically Power Hardwa...
The energy systems are evolving towards the wide integration of power electronics-based technologies...
The hardware under test (HUT) in a power hardware in the loop (PHIL) implementation can have a signi...
A virtual power system can be interfaced with a physical system to form a power hardware-in-the-loop...
The use of Power-Hardware-In-the-Loop (PHIL) system studies is on the rise, in simulation and valida...
The importance of Power Hardware-in-the-Loop (PHIL) experiments is rising more and more over the las...
A novel power hardware-in-the-loop interface algorithm, the Virtual Shifting Impedance, is developed...
Evaluating the power electronics behavior in real grid conditions is challenging. In simulation, lar...
The usual practice to study a large power system is through digital computer simulation. However, th...
Driven by the target of decarbonization through eliminating carbon emissions and developing a renewa...
Power hardware-in-the-loop (PHIL) systems are advanced, real-time platforms for combined software an...
The stability and accuracy of power hardware-in-the-loop (PHIL) setups are sensitive to and deterior...
In power hardware in the loop (PHIL) simulations, a real-time simulated power system is interfaced t...
In power hardware in the loop (PHIL) simulations, a real-time simulated power system is interfaced t...
The hardware under test (HUT) in a power hardware in the loop (PHIL) implementation can have a signi...
The subject of this doctoral thesis is the use of real-time simulation and specifically Power Hardwa...
The energy systems are evolving towards the wide integration of power electronics-based technologies...
The hardware under test (HUT) in a power hardware in the loop (PHIL) implementation can have a signi...