Rising fuel prices over the past few years and the urgent need to reduce the carbon footprint related to transportation have triggered an increased demand for fuel-efficient hybrid electric vehicles ...
HIL testing enables faster, safer and more cost-effective development through real-time simulation of complex vehicle systems. Modern automobiles contain numerous ECUs, providing numerous ...
The global transition to electric mobility is reshaping automotive engineering across multiple disciplines. In EV powertrains, improvements in efficiency, faster charging, and functional safety are ...
Data centers are among the most power‑intensive and schedule‑critical facilities being built today. Growth in cloud computing, hyperscale platforms, and AI workloads is driving both scale and urgency, ...
Power Hardware-in-the-Loop (PHIL) simulation combines real-time digital models of electrical networks with physical power components to create a closed-loop testing environment. By emulating grid ...
Real-time power system simulation and hardware-in-the-loop (HIL) testing have been transforming the power industry for over 30 years. These tools have revolutionized the way that engineers study power ...
How the challenges of electric-motor control design can be overcome using digital twins in all design and test phases. How automated testing within a continuous and integrated toolchain is able to ...
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