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首页> 外文期刊>Journal of Zhejiang university science >Underwater glider design based on dynamic model analysis and prototype development
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Underwater glider design based on dynamic model analysis and prototype development

机译:基于动态模型分析和原型开发的水下滑翔机设计

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Underwater gliders are efficient mobile sensor platforms that can be deployed for months at a time, traveling thousands of kilometers. Here, we describe our development of a coastal 200 m deep underwater glider, which can serve as an ocean observatory platform operating in the East China Sea. Our glider is developed based on dynamic model analysis: steady flight equilibrium analysis gives the varied range of moving mass location for pitch control and the varied vehicle volume for buoyancy control; a stability analysis is made to discuss the relationship between the stability of glider motion and the location of glider wings and rudder by root locus investigation of glider longitudinal- and lateral-directional dynamics, respectively. There is a tradeoff between glider motion stability and control authority according to the specific glider mission requirements. The theoretical analysis provides guidelines for vehicle design, based on which we present the development progress of the Zhejiang University (ZJU) glider. The mechanical, electrical, and software design of the glider is discussed in detail. The performances of glider key functional modules are validated by pressure tests individually; preliminary pool trials of the ZJU glider are also introduced, indicating that our glider functions well in water and can serve as a sensor platform for ocean sampling.
机译:水下滑翔机是高效的移动传感器平台,可以一次部署数月,行驶数千公里。在这里,我们描述了我们在沿海200 m深的水下滑翔机的开发情况,该滑翔机可以作为在东中国海运行的海洋观测平台。我们的滑翔机是基于动态模型分析而开发的:稳定的飞行平衡分析提供了变距的运动质量位置范围用于俯仰控制,而变化的飞行器体积用于浮力控制;分别通过对滑翔机纵向和横向动力学的根轨迹研究,对滑翔机运动的稳定性与滑翔机机翼和舵的位置之间的关系进行了稳定性分析。根据特定的滑行任务要求,在滑行运动稳定性和控制权限之间要进行权衡。理论分析为车辆设计提供了指南,在此基础上,我们介绍了浙江大学(ZJU)滑翔机的发展进展。详细讨论了滑翔机的机械,电气和软件设计。滑翔机关键功能模块的性能分别通过压力测试进行验证;还介绍了ZJU滑翔机的初步泳池试验,这表明我们的滑翔机在水中运行良好,可以用作海洋采样的传感器平台。

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