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首页> 外文期刊>Journal of Zhejiang University. Science, A >A novel multi-objective optimization method for the pressurized reservoir in hydraulic robotics
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A novel multi-objective optimization method for the pressurized reservoir in hydraulic robotics

机译:液压机器人加压储层的一种新型多目标优化方法

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摘要

The pressurized reservoir is a closed hydraulic tank which plays a significant role in enhancing the capabilities of hydraulic driven robotics. The spring pressurized reservoir adopted in this paper requires comprehensive performance, such as weight, size, fluid volume, and pressure, which is hard to balance. A novel interactive multi-objective optimization approach, the feasible space tightening method, is proposed, which is efficient in solving complicated engineering design problems where multiple objectives are determined by multiple design variables. This method provides sufficient information to the designer by visualizing the performance trends within the feasible space as well as its relationship with the design variables. A step towards the final solution could be made by raising the threshold on performance indicators interactively, so that the feasible space is reduced and the remaining solutions are more preferred by the designer. With the help of this new method, the preferred solution of a spring pressurized reservoir is found. Practicability and efficiency are demonstrated in the optimal design process, where the solution is determined within four rounds of interaction between the designer and the optimization program. Tests on the designed prototype show good results.
机译:加压储存器是一个封闭的液压罐,在提高液压驱动机器人的能力方面发挥着重要作用。本文采用的春季加压储层需要综合性能,如重量,尺寸,流体体积和压力,这很难平衡。提出了一种新颖的交互式多目标优化方法,即可行的空间收紧方法,其在解决复杂的工程设计问题方面是有效的,其中多个目标由多个设计变量决定。该方法通过可行空间内的性能趋势以及与设计变量的关系来提供足够的信息。可以通过以交互式提高性能指标的阈值来进行朝向最终解决方案的步骤,从而降低可行空间,并且设计者更优选其余的解决方案。借助这种新方法,发现了弹簧加压储层的优选解决方案。在最佳设计过程中证明了实用性和效率,其中解决方案是在设计者和优化程序之间的四轮交互中确定的。在设计的原型测试显示了良好的效果。

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