AKEA的设计与开发:360度旋转车辆

Adedeji. A. Kasali, Yussuoff A. Abiodun, Emola. W. Shola, Olajide. S. Anthony, Ogundele A Gbolahan
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引用次数: 0

摘要

针对传统轮式车辆存在的问题,提出了一种360度旋转车辆的设计方案。本文重点介绍了这种设计的好处,提出了实现这种设计的模型,并设计了一种360度旋转车辆,称为AKEA。传统轮式车辆面临着停车、掉头等诸多问题。360度旋转车辆的设计消除了这些问题,因为它可以在不移动车辆的情况下轮换,并且不需要额外的空间来转动车辆。提出的实现360度旋转车辆设计的模型包括升降板、链轮、链条或皮带驱动和四转向机构。这些模型有几个缺点,包括设计复杂,不现实的特征和增加转弯半径。然而,AKEA的设计结合了可持续和可回收材料,设计过程的结果是一辆具有各种功能的车辆。这些功能包括侧向移动、360度旋转和手机操作。AKEA通过蓝牙与手机相连,范围为100米。然而,为了进一步改进设计,提出了用于自动驾驶和WiFi连接的传感器,以实现更广泛的连接。综上所述,为了减少和消除传统轮式车辆遇到的问题,设计360度旋转车辆是必要的。虽然已经提出了几种模型,但AKEA设计具有各种功能,可以在现代汽车和卡车上实施。通过结合传感器和WiFi连接来改进设计将提高移动应用程序的响应能力,并确保更广泛的连接。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Development of AKEA: A 360-degree rotating vehicle
The design of a 360-degree rotating vehicle has been proposed as a solution to the problems encountered in traditional wheel vehicles. This paper highlights the benefits of such a design, the proposed models for implementing the design, and the design of a 360-degree rotating vehicle known as AKEA. Traditional wheel vehicles are faced with numerous problems such as parking and u-turn. The 360-degree rotating vehicle design eliminates these problems as it can take turns without moving the vehicle, and no extra space is required to turn the vehicle. The proposed models for implementing the design of the 360-degree rotating vehicle include lifting plates, chain sprockets, chain or belt drives, and quad-steering mechanisms. These models have several shortcomings, including complexity in design, unrealistic features and increased turning radius. The AKEA design, however, incorporates sustainable and recycled materials, and the result of the design process was a vehicle that performed various features. These features include side-ways movement, 360-degree rotation, and mobile phone operation. AKEA is connected to the mobile phone via Bluetooth, having a range of 100 meters. However, to improve the design further, sensors for self-driving and WiFi connectivity for a broader range of connectivity were proposed. In conclusion, the design of a 360-degree rotating vehicle is necessary to reduce and eliminate problems encountered in traditional wheel vehicles. Although several models have been proposed, the AKEA design performs various features and can be implemented in modern cars and trucks. Improving the design by incorporating sensors and WiFi connectivity will improve the responsiveness of the mobile application and ensure wider range connectivity.
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