Implementation of a Field-Oriented Control Strategy for Electromagnetic Shock Absorbers

Gennaro Sorrentino, S. Circosta, R. Galluzzi, N. Amati, A. Tonoli
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Abstract

Chassis electrification is paramount in the automotive transition towards emission reduction and automated driving. In this context, electromagnetic shock absorbers are regarded as a promising technology for chassis control. They enhance the suspension with active and passive forces by means of a suitably interfaced and controlled electric machine. To this end, Field-Oriented Control is commonly adopted for brushless permanent-magnet machines. However, the suspension experiences impulsive forces at high speed, when the vehicle undergoes through bumps or potholes. Thus, a field-weakening strategy must be included to guarantee stable and efficient operation in the aforementioned conditions. This paper presents the implementation of a field-oriented control strategy with field weakening. Laboratory testing is carried out on a three-phase permanent-magnet synchronous motor of an electro-hydrostatic shock absorber.
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电磁减震器场导向控制策略的实现
底盘电气化在汽车向减排和自动驾驶过渡中至关重要。在这种背景下,电磁减震器被认为是一种很有前途的底盘控制技术。它们通过适当的接口和控制的电机来增强悬架的主动和被动力。为此,无刷永磁电机通常采用磁场定向控制。然而,在高速行驶时,当车辆经过颠簸或坑洼时,悬架会受到冲力。因此,必须包括削弱油田的策略,以保证在上述条件下稳定有效地作业。本文提出了一种带弱场的面向场的控制策略。对电静液减振器的三相永磁同步电动机进行了实验室试验。
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Adjusting MOVES’ Emission Factors in Light-duty Vehicles for a Specific Region Using Local Measurements Attitude Control for Quadcopters using Reinforcement Learning Bounded Gradient Attitude Control of a Quadcopter Supervisor-Based Switching Strategy for Semi-Active Suspension Control ISEM 2022 Cover Page
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