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Operating Comfort Prediction Model of Human-Machine Interface Layout for Cabin Based on GEP

机译:基于GEP的机舱人机界面布局运行舒适性预测模型

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In view of the evaluation and decision-making problem of human-machine interface layout design for cabin, the operating comfort prediction model is proposed based on GEP (Gene Expression Programming), using operating comfort to evaluate layout scheme. Through joint angles to describe operating posture of upper limb, the joint angles are taken as independent variables to establish the comfort model of operating posture. Factor analysis is adopted to decrease the variable dimension; the model’s input variables are reduced from 16 joint angles to 4 comfort impact factors, and the output variable is operating comfort score. The Chinese virtual human body model is built by CATIA software, which will be used to simulate and evaluate the operators’ operating comfort. With 22 groups of evaluation data as training sample and validation sample, GEP algorithm is used to obtain the best fitting function between the joint angles and the operating comfort; then, operating comfort can be predicted quantitatively. The operating comfort prediction result of human-machine interface layout of driller control room shows that operating comfort prediction model based on GEP is fast and efficient, it has good prediction effect, and it can improve the design efficiency.
机译:针对机舱人机界面布局设计的评价和决策问题,提出了基于基因表达程序(GEM)的运行舒适度预测模型,并通过操作舒适度对布局方案进行评估。通过关节角描述上肢的操作姿势,将关节角作为独立变量建立操作姿势的舒适度模型。采用因子分析来减小变量的维数;该模型的输入变量从16个关节角度减少到4个舒适度影响因子,而输出变量是操作舒适度得分。中国虚拟人体模型是由CATIA软件构建的,可用于模拟和评估操作员的操作舒适性。通过22组评估数据作为训练样本和验证样本,GEP算法用于获得关节角度和操作舒适性之间的最佳拟合函数;然后,可以定量地预测操作舒适度。司钻控制室人机界面布局的运行舒适度预测结果表明,基于GEP的运行舒适度预测模型快速有效,具有良好的预测效果,可以提高设计效率。

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