Pressure Control Model of High Pressure Tubing Based on Genetic Algorithm Optimization

Ming Liu, Zelong Ni, Enyu Bai
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Abstract

In the working process of high-pressure oil pipeline, the change of pressure will affect the fuel injection quantity, which leads to the decrease of working efficiency. Therefore, this paper aims to solve the problem of pressure control. Firstly, the fuel injection amount is calculated through the bottom end of the needle valve and the area of the injection hole; The lift of the high-pressure oil pump cam slave piston is obtained, then data information on the pole angle and pole diameter is then integrated together, the edge and the base circle curve of the cam can be obtained; Finally, combined with the needle valve lift cycle image, the angular velocity calculation of the high pressure tube pressure cams at 100mpa can be answered using a genetic algorithm.
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基于遗传算法优化的高压油管压力控制模型
高压输油管道在工作过程中,压力的变化会影响喷油量,导致工作效率下降。因此,本文旨在解决压力控制问题。首先通过针阀底端和喷油孔面积计算出喷油量;得到高压油泵凸轮副活塞的升程,然后将极点角度和极点直径的数据信息整合在一起,得到凸轮的边缘和基圆曲线;最后,结合针阀升程周期图像,利用遗传算法求解高压管压力凸轮在100mpa时的角速度计算。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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