基于模型的车轮转速的中断捕获综合稳定控制方法

Appalaraju Madeti, K. Tilak, Narasimha Bidi, U. Karle, K. Prasanna Venkatesan
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引用次数: 1

摘要

汽车主动安全系统的一个关键技术特征是准确、即时地计算车轮速度和车轮角加减速。无论用于实现控制功能的控制逻辑如何,准确和快速的测量对于主动安全系统的功能至关重要。车轮速度的准确采集是车辆速度、车辆加减速、车辆纵向力、车轮载荷、道路摩擦系数和车辆偏航率等关键动态状态的准确估计。该方法保证了高速和低速时的准确性和低速时的实时性。硬件中断是为霍尔效应轮速传感器的每一个上升沿和下降沿生成的,并用于触发中断服务程序,该程序实现了时间捕获算法。与基于上升沿或下降沿的传统输入捕获方法相比,该方法确保霍尔效应传感器脉冲不会丢失,从而提供准确的测量值。文中还提供了上述策略在MIL和车辆试验中的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Model-based Wheel Speed acquistion by interrupt capture method for integrated stability control
A key technological feature of automotive active safety systems is the accurate and instantaneous calculation of the Wheel Speed and Wheel angular Acceleration or Deceleration. Accurate and fast measurements are critical for the functionality of the active safety systems, irrespective of the control logic used to realize the control function. The accurate estimation of critical vehicle dynamic states such as Vehicle Speed, Vehicle Acceleration or Deceleration, Vehicle Longitudinal Force, Wheel Load, Road Friction Coefficient and Vehicle Yaw Rate depend on the accurate acquisition of the Wheel Speed This paper presents a novel model-based method for Wheel Speed acquisition based on interrupt capture. This method assures accuracy at high and low speed and the real-time performance at low speed. The hardware interrupts are generated for every rising and falling edges of Hall effect Wheel Speed Sensor, and are used to trigger an Interrupt Service Routine that implements a time capture algorithm. This method ensures that Hall effect sensor pulses are not missed hence provides accurate measured values compared to conventional Input capture methods based on either rising or falling edges. The paper also provides the results of above strategy from MIL and Vehicle tests.
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