Abstract
This study investigates an adaptive differential control system for 4WID (4-wheel-independent-drive) electric vehicles. The novel adaptive system will maneuver the in-dependently operating hub motors without the help of any conventional steering mechanism. The control system consists of a hierarchical structure to confront the vehicle stability condition, which includes a novel SMC (sliding mode control) with a fuzzy algorithm parameter modification to achieve the required virtual control signal at the top level, and a quadratic programming-based torque allocation algorithm at the bottom-level controller. The proposed controller was tested through Simulink/Carsim simulation and experiments. All the test cases showed the advantages of the proposed method over some of the currently existing 4WID control strategies.
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CITATION STYLE
Zhang, W., Liu, Z., & Chen, Q. (2021). Electronic differential system based on adaptive smc combined with qp for 4wid electric vehicles. World Electric Vehicle Journal, 12(3). https://doi.org/10.3390/wevj12030126
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