Maintenance Optimization Design of Automobile Anti-lock Brake System Based on Importance Measures

Author(s):  
Keqi Qu ◽  
Lu Kou ◽  
Ning Wang
2012 ◽  
Vol 233 ◽  
pp. 328-331
Author(s):  
Jing Yi Zhao ◽  
Chun Hui Zhang ◽  
Rui Guo ◽  
De Cai Han ◽  
Yong Chang Wang

On the base of introducing the principle of the brake system of mine dump truck,the in fluence factors of the brake performance are analysed.In order to further reduce the brake distance to meet the requirements of actual use,the improvement plan is presented for brake system opti mization and the field test is made.The results show that the brake duration of the brake system is re duced after the optimization and the performance is improved which is of great practical significance.


2020 ◽  
Vol 64 (1-4) ◽  
pp. 165-172
Author(s):  
Dongge Deng ◽  
Mingzhi Zhu ◽  
Qiang Shu ◽  
Baoxu Wang ◽  
Fei Yang

It is necessary to develop a high homogeneous, low power consumption, high frequency and small-size shim coil for high precision and low-cost atomic spin gyroscope (ASG). To provide the shim coil, a multi-objective optimization design method is proposed. All structural parameters including the wire diameter are optimized. In addition to the homogeneity, the size of optimized coil, especially the axial position and winding number, is restricted to develop the small-size shim coil with low power consumption. The 0-1 linear programming is adopted in the optimal model to conveniently describe winding distributions. The branch and bound algorithm is used to solve this model. Theoretical optimization results show that the homogeneity of the optimized shim coil is several orders of magnitudes better than the same-size solenoid. A simulation experiment is also conducted. Experimental results show that optimization results are verified, and power consumption of the optimized coil is about half of the solenoid when providing the same uniform magnetic field. This indicates that the proposed optimal method is feasible to develop shim coil for ASG.


2005 ◽  
Vol 42 (5) ◽  
pp. 1375-1375 ◽  
Author(s):  
Shinkyu Jeong ◽  
Mitsuhiro Murayama ◽  
Kazuomi Yamamoto

Author(s):  
Sai-jun LV ◽  
Long-yang DAI ◽  
Long-yang DAI ◽  
Hong-geng ZHU

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