Design and simulation optimisation of a new pressure sensing system

Wang Qixin, Zhang Biao, Hu Yunqiang, Wen Qi, K. Wende
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引用次数: 0

Abstract

The depth simulator can simulate the depth variation of seawater in real time and is an important part of the semi-physical simulation system of underwater equipment. In order to detect the high-pressure resistance and pressure detection accuracy of underwater operation equipment, the deep sea simulator is required to restore the ocean pressure environment as much as possible. This paper proposes a pressure sensing system with a stop device. By integrating the advantages of the large-range pressure sensor, the sensing system has the characteristics of large-range and high-precision. The physical samples were made and tested, and the friction of the sealing ring was found to be too large. Based on the multi-objective optimisation program, Matlab was used to simulate and optimise, and the reasonable structural parameters of the pressure sensing system were obtained.
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一种新型压力传感系统的设计与仿真优化
深度模拟器可以实时模拟海水的深度变化,是水下装备半物理仿真系统的重要组成部分。为了检测水下作业设备的耐高压性能和测压精度,需要深海模拟器尽可能地还原海洋压力环境。本文提出了一种带停止装置的压力传感系统。通过集成大量程压力传感器的优点,使传感系统具有大量程、高精度的特点。制作了实物样品并进行了测试,发现密封圈的摩擦力过大。基于多目标优化程序,利用Matlab进行仿真优化,得到了压力传感系统的合理结构参数。
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来源期刊
International Journal of Wireless and Mobile Computing
International Journal of Wireless and Mobile Computing Computer Science-Computer Science (all)
CiteScore
0.80
自引率
0.00%
发文量
76
期刊介绍: The explosive growth of wide-area cellular systems and local area wireless networks which promise to make integrated networks a reality, and the development of "wearable" computers and the emergence of "pervasive" computing paradigm, are just the beginning of "The Wireless and Mobile Revolution". The realisation of wireless connectivity is bringing fundamental changes to telecommunications and computing and profoundly affects the way we compute, communicate, and interact. It provides fully distributed and ubiquitous mobile computing and communications, thus bringing an end to the tyranny of geography.
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