The testing of complex power components by means of power hardware in the loop (PHIL) requires accurate and stable PHIL platforms. The total time delay typically present within these platforms is commonly acknowledged to be an important factor to be considered due to its impact on accuracy and stability. However, a thorough assessment of the total loop delay in PHIL platforms has not been performed in the literature. Therefore, time delay is typically accounted for as a constant parameter. However, with the detailed analysis of the total loop delay performed in this article, variability in time delay has been detected as a result of the interaction between discrete components. Furthermore, a time delay characterization methodology (which in...
This Paper discusses Power Hardware-in-the-Loop simulations from an important point of view: an intr...
International audienceWe introduce the prototype of a digital timing simulation and power analysis t...
Evaluating the power electronics behavior in real grid conditions is challenging. In simulation, lar...
The testing of complex power components by means of power hardware in the loop (PHIL) requires accur...
Driven by the target of decarbonization through eliminating carbon emissions and developing a renewa...
Power hardware-in-the-loop (PHIL) simulation leverages the real-time emulation of a large-scale comp...
The stability and accuracy of power hardware-in-the-loop (PHIL) setups are sensitive to and deterior...
In PHIL simulations different time delays are introduced. Although it can be reduced, there is alway...
textBus interfaces keep getting faster and thus requiring designers to build custom physical fabrics...
IEEE This paper addresses the time delay effects of the wide area monitoring and control systems (WA...
WOS: 000271564900004With the extensive use of phasor measurement units (PMU) in the wide-area measur...
This paper describes the method by which a large hardware-in-the-loop environment has been realized ...
In power-hardware-in-the-loop (PHIL) digital simulation testing, a power device, also known as devic...
Currently, with the rapid advancement in technology, it has become increasingly common for companies...
5siA power hardware-in-the-loop (PHIL) facility for grid-linked energy storage is evaluated in this ...
This Paper discusses Power Hardware-in-the-Loop simulations from an important point of view: an intr...
International audienceWe introduce the prototype of a digital timing simulation and power analysis t...
Evaluating the power electronics behavior in real grid conditions is challenging. In simulation, lar...
The testing of complex power components by means of power hardware in the loop (PHIL) requires accur...
Driven by the target of decarbonization through eliminating carbon emissions and developing a renewa...
Power hardware-in-the-loop (PHIL) simulation leverages the real-time emulation of a large-scale comp...
The stability and accuracy of power hardware-in-the-loop (PHIL) setups are sensitive to and deterior...
In PHIL simulations different time delays are introduced. Although it can be reduced, there is alway...
textBus interfaces keep getting faster and thus requiring designers to build custom physical fabrics...
IEEE This paper addresses the time delay effects of the wide area monitoring and control systems (WA...
WOS: 000271564900004With the extensive use of phasor measurement units (PMU) in the wide-area measur...
This paper describes the method by which a large hardware-in-the-loop environment has been realized ...
In power-hardware-in-the-loop (PHIL) digital simulation testing, a power device, also known as devic...
Currently, with the rapid advancement in technology, it has become increasingly common for companies...
5siA power hardware-in-the-loop (PHIL) facility for grid-linked energy storage is evaluated in this ...
This Paper discusses Power Hardware-in-the-Loop simulations from an important point of view: an intr...
International audienceWe introduce the prototype of a digital timing simulation and power analysis t...
Evaluating the power electronics behavior in real grid conditions is challenging. In simulation, lar...