Design and Development of an Autonomous Rover Application using A Rocker-Bogie Mechanism In Agriculture

Rutvik Sandbhor, Sanket Kachale, Aditya Bhosale, Prof. Kundlik Kshirsagar, Prof. Pravin Sharma
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Abstract

The crucial topic of upgrading the rover over its earlier designs is covered in the project work "STUDY ON ROCKER ROVER AND ITS IMPLEMENTATION IN THE FIELD OF AGRICULTURE." The ROCKER rover was intended for use on similar excursions that require it to function in challenging conditions, such as the Moon's surface. However, the use of the rocker rover can be expanded even further in fields of employment where the land has to be used for operations, such as agricultural farming. Our research focuses on how the rocker rover can be modified for use in farming, greatly increasing the automation of the agricultural sector. The rover's body is entirely composed of PVC to boost. With the introduction of cutting-edge technologies, agricultural practices are changing with the goal of enhancing sustainability, accuracy, and efficiency. The design and construction of an autonomous rover with a rocker-bogie suspension system specifically intended for agricultural applications is the main goal of this study. When doing in-situ scientific investigation of goals that are separated by several metres to tens of km, rocker bogie are crucial. The complicated mobility designs of today use numerous wheels or legs. They are vulnerable to mechanical failure brought on by Mars' hostile atmosphere. a four-wheeled rover with a high degree of mobility suspension system that is effective in navigating uneven terrain. The main mechanical characteristic of the rocker bogie design is how simple its drive train is—it only requires two motors to move. Because both motors are housed inside the body, where heat variance is minimised, dependability and efficiency are raised. Because there aren't many barriers on natural terrain that call for the rover to use all of its front wheels, four wheels are used
利用摇臂-转向机构设计和开发农业自主漫游车应用程序
"关于 ROCKER 漫游车及其在农业领域的应用的研究 "项目工作涵盖了漫游车在其早期设计基础上进行升级这一关键主题。ROCKER 漫游车旨在用于需要在月球表面等挑战性条件下运行的类似旅行。然而,在农业耕作等需要利用土地进行作业的领域,摇臂漫游车的用途可以进一步扩大。我们的研究重点是如何将摇臂车改装后用于农业耕作,从而大大提高农业部门的自动化程度。随着尖端技术的引入,农业生产方式正在发生变化,其目标是提高可持续性、准确性和效率。本研究的主要目标是设计和建造一辆配备摇臂式悬挂系统的自动漫游车,专门用于农业应用。在对相距几米到几十公里的目标进行现场科学调查时,摇臂转向架至关重要。当今复杂的移动设计使用了许多轮子或支腿。这种四轮漫游车具有高度机动性的悬挂系统,能够有效地在不平坦的地形上行驶。摇臂转向架设计的主要机械特点是其传动系统非常简单--只需要两个电机就能移动。由于两个电机都安装在车体内部,热量变化最小,因此提高了可靠性和效率。在自然地形上,需要漫游车使用全部前轮的障碍物并不多,因此使用了四个车轮
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