Survival in remote snow bounded areas is unsafe and risky for mankind. Many problems like arthritis, frostbite, asthma, starvation can caused and lead to death. Indian Military provides transportation vehicles which are heavily built and needs manpower for monitoring. Hence it necessitates facilitating compact transportation to fulfill all requirements. This research aimed at design and analysis of mobile unmanned vehicle for transportation & providing medical help, food and other essential things necessary for surviving in such areas. This can also be used for military services to save the life of solider with less risk. It is typical medium weight, high speed vehicle which carries up to 35 kg load and can negotiate through loose snow, rough terrain with use of caterpillar track. The noteworthy feature of the vehicle is that it constitutes of spiral blades and V shape snowplow to make its way through snow. Hence it will repel the snow in outward direction for self-extraction. It also incorporates skis and hubs for changing the direction and smooth suspension. 3D model of the vehicle is drafted in CATIA and structural analysis is carried out in ANSYS. Control system design and mechatronics integration is proposed to develop the prototype by assembling various components.
翻译:偏远的积雪地带的生存是不安全和危险的,许多问题,如关节炎、冻土、哮喘、饥饿等,可能造成死亡。印度军方提供交通车辆,这些车辆建得繁忙,需要人手监测。因此,必须便利紧凑运输,以满足所有要求。这项研究旨在设计和分析用于运输的机动无人驾驶车辆,并提供在这些地区生存所需的医疗帮助、食物和其他必需品。这也可用于军事服务,以挽救危险性较低的固态者的生命。这是典型的中度重量,高速车辆运载多达35公斤的载重,能够通过松散的雪、粗糙的地形以及使用毛毛虫轨道进行谈判。该车辆的显著特征是,它构成螺旋刀片和V形雪花,以便通过雪雪流经,从而将雪向外翻转,以自我发热。它还包括改变方向和平稳悬浮的滑动的滑雪和中枢。该车辆的3D型型型是在CATIA中起草的,结构分析是在ANSYSIS系统设计和中进行。拟用各种部件来发展原型。