Health-Aware Equivalent Consumption Minimization Strategy for Fuel Cell Hybrid Electric Vehicles
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Examensarbete för masterexamen
Master's Thesis
Master's Thesis
Modellbyggare
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Sammanfattning
Fuel cell hybrid electric vehicles (FCHEVs) are gaining increasing attention as the
transition toward sustainable mobility accelerates. One of the key challenges in the
application of FCHEVs is to achieve an optimal power split between the fuel cell
and the battery. Traditional energy management strategies mainly focus on minimizing
energy consumption. However, from a life-cycle perspective, the degradation
of system components also has a significant impact on overall efficiency.
This thesis proposes a health-aware equivalent consumption minimization strategy
that considers both fuel consumption and component degradation. The degradation
related costs are incorporated into the traditional cost function, which otherwise accounts
only for hydrogen consumption. An analytical solution is then developed to
obtain the optimal solution for the control problem. To reduce the computational
complexity and make the cost function differentiable, Taylor expansion is employed
and the cost function is reformulated as a piecewise quadratic function.
The proposed method is implemented and evaluated within Volvo’s Global Simulation
Platform, enabling system-level validation under representative driving conditions.
The simulation results show that the proposed method can significantly
mitigate fuel cell degradation, with an acceptable increase in battery degradation
and fuel consumption. Meanwhile, the charge sustaining performance and drivability
are largely preserved.
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fuel cell hybrid electric vehicles, equivalent consumption minimization strategy, degradation, health-aware
