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Multi-objective uncertainty optimization method for vehicle occupant restraint system

An uncertainty and occupant-constrained technology, applied in the field of vehicle safety, can solve problems such as the inability to guarantee the accuracy of the optimal design solution and the low optimization efficiency.

Active Publication Date: 2018-10-12
CHANGSHA UNIVERSITY OF SCIENCE AND TECHNOLOGY
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AI Technical Summary

Problems solved by technology

Therefore, in order to overcome the shortcomings of low optimization efficiency, a small number of existing technologies use approximate model technology, such as the patent "A Multi-objective Reliability Optimization Technology for Vehicle Frontal Collision Safety" with the publication number CN102945327A and the publication number as CN102495923A's patent "a hybrid reliability evaluation method for automobile collision safety", but the above-mentioned patent only constructs an approximate model once, and for complex engineering multi-objective optimization problems such as automobile occupant restraint systems, an approximate model The establishment of the method cannot guarantee the accuracy of the optimal design solution
[0008] To sum up, among the current multi-objective optimization design methods for vehicle occupant restraint systems, there is no patent that considers both the correlation between uncertain design variables and multiple reconstructions of approximate models.

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  • Multi-objective uncertainty optimization method for vehicle occupant restraint system
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  • Multi-objective uncertainty optimization method for vehicle occupant restraint system

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Embodiment Construction

[0089] General method of the present invention is described below in conjunction with accompanying drawing: as figure 1 As shown, a multi-objective uncertainty optimization method for a vehicle occupant restraint system includes the following steps:

[0090] Step 1: Analyze the uncertain factors in the manufacturing process of the vehicle occupant restraint system, use the ellipsoid convex set model to model the correlated uncertain design variables, and then select the deterministic design variables, constraint functions and objectives function to establish the multi-objective uncertainty optimization problem of the vehicle occupant restraint system, the specific expression is formula (1):

[0091] , Formula 1)

[0092] s.t. ,

[0093] ,

[0094] , ,

[0095] In formula (1), is the objective function, is a constraint function, for The deterministic design vector of dimension, its value range is , for the existence of correlation dimensiona...

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Abstract

The invention discloses a multi-objective uncertainty optimization method for a vehicle occupant restraint system. The method describes the correlation of uncertainty variables of the vehicle occupantrestraint system by using an ellipsoidal convex set model, and uses the interval order relationship and the interval possibility degree to transform the multi-objective uncertainty optimization problem into a deterministic optimization problem. In order to improve the computational efficiency, a local encryption approximation model method is introduced into the iterative solution process, and anapproximation model is reconstructed multiple times to ensure the accuracy of the approximation model and the computational result; and the multi-objective uncertainty optimization method is used forsolving the non-dominated solution set that satisfies the protection performance of the vehicle occupant restraint system, thereby ensuring the safety of the vehicle occupant. The multi-objective uncertainty optimization method for the vehicle occupant restraint system in the invention can not only effectively improve the protection performance of the vehicle occupant restraint system, but also can substantially improve computational efficiency and solution quality of optimization and has a wide range of engineering applications in the field of automotive safety.

Description

technical field [0001] The invention relates to the field of vehicle safety, in particular to a multi-objective uncertainty optimization method for an automobile occupant restraint system. Background technique [0002] When a car collides, the car occupant restraint system composed of seat belts, safety seats, airbags and other devices can not only effectively buffer the impact load on the occupants, but also avoid secondary collisions between the occupants and the interior of the vehicle body. Thereby play the role of car occupant protection. Studies have shown that the protective performance of the occupant restraint system will directly determine the degree of occupant injury and death rate. Therefore, the vehicle occupant restraint system is the top priority of vehicle safety technology research. [0003] For the design of vehicle occupant restraint system, the existing optimal design methods have the following problems: [0004] 1. Most of the existing optimization m...

Claims

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Application Information

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IPC IPC(8): G06F17/50G06N3/12
CPCG06N3/126G06F30/15G06F30/20
Inventor 刘鑫孙林董建业吴迪王昕宇张远洋
Owner CHANGSHA UNIVERSITY OF SCIENCE AND TECHNOLOGY
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