This paper presents an Approximate Dynamic Programming scheme that, based on the assumption of perfectly known future driving, efficiently solves the optimal power split in a Series-Parallel hybrid powertrain. The scheme combines two ideas to reduce the computational load of the dynamic programming. First, the cost-to-go function is approximated using piecewise linear functions on a sparse grid. Secondly, by using precalculated maps, the iterations performed in the dynamic programming are reduced to simple table lookups and linear interpolation. The approximation scheme is simulated on a Four Quadrant Transducer Series-Parallel Hybrid Electric Bus. In the simulations the approximation scheme is able to find a sufficiently good approximatio...
The use of the neuro-dynamic programming method for real-time control of a parallel hybrid electric ...
Automotive engineers and researchers have proposed different Series-Parallel Hybrid Electric Vehicle...
Optimal Control of Hybrid Vehicles provides a description of power train control for hybrid vehicles...
The extra degree of freedom offered in hybrid electric vehicles have inspired many researchers to fo...
Abstract: The extra degree of freedom offered in hybrid electric vehicles have inspired many researc...
The extra degree of freedom offered in hybrid electric vehicles have inspired manyresearchers to for...
Hybrid electric drivetrains are an example of systems that can enable discrete switching between sta...
Hybrid electric drivetrains are an example of systems that can enable discrete switching between sta...
Hybrid electric drivetrains are an example of systems that can enable discrete switching between sta...
Abstract—The computationally demanding Dynamic Program-ming (DP) algorithm is frequently used in aca...
In this paper, the dynamic programming algorithm is applied to the control strategy design of parall...
Hybrid electric drivetrains are an example of systems that can enable discrete switching between sta...
Hybrid electric drivetrains are an example of systems that can enable discrete switching between sta...
Hybrid electric drivetrains are an example of systems that can enable discrete switching between sta...
Hybrid electric drivetrains are an example of systems that can enable discrete switching between sta...
The use of the neuro-dynamic programming method for real-time control of a parallel hybrid electric ...
Automotive engineers and researchers have proposed different Series-Parallel Hybrid Electric Vehicle...
Optimal Control of Hybrid Vehicles provides a description of power train control for hybrid vehicles...
The extra degree of freedom offered in hybrid electric vehicles have inspired many researchers to fo...
Abstract: The extra degree of freedom offered in hybrid electric vehicles have inspired many researc...
The extra degree of freedom offered in hybrid electric vehicles have inspired manyresearchers to for...
Hybrid electric drivetrains are an example of systems that can enable discrete switching between sta...
Hybrid electric drivetrains are an example of systems that can enable discrete switching between sta...
Hybrid electric drivetrains are an example of systems that can enable discrete switching between sta...
Abstract—The computationally demanding Dynamic Program-ming (DP) algorithm is frequently used in aca...
In this paper, the dynamic programming algorithm is applied to the control strategy design of parall...
Hybrid electric drivetrains are an example of systems that can enable discrete switching between sta...
Hybrid electric drivetrains are an example of systems that can enable discrete switching between sta...
Hybrid electric drivetrains are an example of systems that can enable discrete switching between sta...
Hybrid electric drivetrains are an example of systems that can enable discrete switching between sta...
The use of the neuro-dynamic programming method for real-time control of a parallel hybrid electric ...
Automotive engineers and researchers have proposed different Series-Parallel Hybrid Electric Vehicle...
Optimal Control of Hybrid Vehicles provides a description of power train control for hybrid vehicles...