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  • 履带式自行火炮射击时动力学仿真分析

    采用Pro/E建立某履带式自行火炮的实体模型,通过软件间的数据接口将模型导入到ADAMS中,在ADAMS中对模型施加相应的约束得到自行火炮的多体动力学模型.尔后通过设定适当的仿真参数,分别对火炮在0°射向、不同射角工况下的射击过程进行动力学仿真分析,得出炮塔内某仪器安装位置在不同射击条件下的振动响应.通过对仿真数据的提取,绘制出火炮射角响应谱曲线,得到了0°射向时取得最大响应峰值的射角参数,为后续的研究提供了条件.
    李本,任国全,李冬伟,郑鹏翱 - 系统仿真学报
    文章来源: 万方数据
  • The current research of real-time observation for vehicle roll steer angle and compliance steer angle(both of them comprehensively referred as the additional steer angle in this paper) mainly employs the linear vehicle dynamic model, in which only the lateral acceleration of vehicle body is considered. The observation accuracy resorting to this method cannot meet the requirements of vehicle real-time stability control, especially under extreme driving conditions. The paper explores the solution resorting to experimental method. Firstly, a multi-body dynamic model of a passenger car is built based on the ADAMS/Car software, whose dynamic accuracy is verified by the same vehicle's roadway test data of steady static circular test. Based on this simulation platform, several influencing factors of additional steer angle under different driving conditions are quantitatively analyzed. Then ε-SVR algorithm is employed to build the additional steer angle prediction model, whose input vectors mainly include the sensor information of standard electronic stability control system(ESC). The method of typical slalom tests and FMVSS 126 tests are adopted to make simulation, train model and test model's generalization performance. The test result shows that the influence of lateral acceleration on additional steer angle is maximal(the magnitude up to 1°), followed by the longitudinal acceleration-deceleration and the road wave amplitude(the magnitude up to 0.3°). Moreover, both the prediction accuracy and the calculation real-time of the model can meet the control requirements of ESC. This research expands the accurate observation methods of the additional steer angle under extreme driving conditions.
     - 中国机械工程学报
    文章来源: 万方数据
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