首页> 外文会议>ASME international mechanical engineering congress and exposition >A MODEL BASED FRAMEWORK FOR WHEEL LOCK SIMULATION IN A BRAKE DYNAMOMETER TOWARDS HEAVY ROAD VEHICLE SAFETY
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A MODEL BASED FRAMEWORK FOR WHEEL LOCK SIMULATION IN A BRAKE DYNAMOMETER TOWARDS HEAVY ROAD VEHICLE SAFETY

机译:一种基于模型的制动力计中的车轮锁定模拟框架,以实现重型道路安全

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This work proposes a method to simulate wheel lock of a Heavy Commercial Road Vehicle (HCRV) using pneumatic brake circuit on a brake dynamometer. The proposed methodology lumps the effects of wheel slip and load transfer during straight-line braking into 'equivalent inertia' on the wheels. This inertia profile could then be imported on a dynamometer interface and realized using suitable inertia discs and an electric motor. Equivalent inertia was computed from test datasets obtained from a Hardware-in-Loop (HiL) experimental system consisting of an air brake system and IPG TruckMaker®, a vehicle dynamic simulation software. These datasets were obtained for various road, vehicle load and braking conditions. This framework would facilitate the evaluation of wheel slip regulation algorithms using a brake dynamometer by capturing necessary dynamics of HCRVs during braking. It is expected that such testing can be placed between HiL and on-road tests, and would provide greater confidence in Active Safety Systems (ASSs) before their deployment on vehicles.
机译:这项工作提出了一种使用制动测功机上的气动制动回路来模拟重型商用公路车辆(HCRV)的车轮锁止的方法。所提出的方法将直线制动过程中车轮打滑和载荷传递的影响集中到车轮上的“等效惯性”中。然后可以将这种惯性曲线导入测力计接口,并使用合适的惯性盘和电动机来实现。等效惯量是根据从硬件在环(HiL)实验系统获得的测试数据集计算得出的,该系统由空气制动系统和IPGTruckMaker®(车辆动态仿真软件)组成。这些数据集是针对各种道路,车辆负载和制动条件而获得的。通过捕获制动过程中HCRV的必要动态,该框架将有助于使用制动测功机评估车轮打滑调节算法。预计可以在HiL和道路测试之间进行此类测试,并在将其部署到车辆上之前对主动安全系统(ASS)提供更大的信心。

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