In this paper we present a solution for real-time multi-FPGA simulation of energy conversion systems based on the Latency-Based Linear Multistep Compound (LB-LMC) simulation approach. The approach relies on a nodal decomposition approach derived from multiport network analysis, and fast parallel communication between Field Programmable Gate Array (FPGA) devices. The results presented in this paper -using a microgrid example- demonstrate how the developed real-time platform overcame the resource scalability limit of single FPGA solvers while achieving a time step size of 100 nanoseconds
The field-programmable gate array (FPGA)-based real-time simulator takes advantage of many merits of...
Real-time simulation of a modular multilevel converter (MMC) plays an important role on the area of ...
We present Golden Gate, an FPGA-based simulation tool that decouples the timing of an FPGA host plat...
This thesis develops an FPGA-based real-time simulation platform for power grids including multiple ...
Large-scale electromagnetic transient simulation of power systems in real-time using detailed modell...
In the design of power systems, real-time simulation is a powerful tool to evaluate and validate des...
International audienceIn real-time Hardware-in-the-Loop (HIL) test applications for power electronic...
Abstract--This paper presents an implementation methodology for the modified two-layer network equiv...
System level testing of Power Electronics Power Distribution Systems (PEPDS) can be challenging when...
Abstract Field‐programmable gate array (FPGA)‐based real‐time simulators are often applied in simula...
Real-time simulation of electric circuit is most often used to test real components connected to a r...
Abstract: FPGA-based acceleration of molecular dynam-ics (MD) has been the subject of several recen...
International audienceMost of actual real time simulation platforms have practically about ten micro...
A multi-rate parallel real-time simulation method based on FPGA–CPU is studied to realize the asynch...
Enhanced environmental standards are leading to an increasing proportion of microgrids (MGs) being i...
The field-programmable gate array (FPGA)-based real-time simulator takes advantage of many merits of...
Real-time simulation of a modular multilevel converter (MMC) plays an important role on the area of ...
We present Golden Gate, an FPGA-based simulation tool that decouples the timing of an FPGA host plat...
This thesis develops an FPGA-based real-time simulation platform for power grids including multiple ...
Large-scale electromagnetic transient simulation of power systems in real-time using detailed modell...
In the design of power systems, real-time simulation is a powerful tool to evaluate and validate des...
International audienceIn real-time Hardware-in-the-Loop (HIL) test applications for power electronic...
Abstract--This paper presents an implementation methodology for the modified two-layer network equiv...
System level testing of Power Electronics Power Distribution Systems (PEPDS) can be challenging when...
Abstract Field‐programmable gate array (FPGA)‐based real‐time simulators are often applied in simula...
Real-time simulation of electric circuit is most often used to test real components connected to a r...
Abstract: FPGA-based acceleration of molecular dynam-ics (MD) has been the subject of several recen...
International audienceMost of actual real time simulation platforms have practically about ten micro...
A multi-rate parallel real-time simulation method based on FPGA–CPU is studied to realize the asynch...
Enhanced environmental standards are leading to an increasing proportion of microgrids (MGs) being i...
The field-programmable gate array (FPGA)-based real-time simulator takes advantage of many merits of...
Real-time simulation of a modular multilevel converter (MMC) plays an important role on the area of ...
We present Golden Gate, an FPGA-based simulation tool that decouples the timing of an FPGA host plat...