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Design and Implementation of a Rotary Parking System for a Truly Smart City in line with Smart Cities Technologies and Trends

机译:根据智能城市的技术和趋势,为真正智能的城市设计旋转停车系统

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As the human population continues to grow, the number of cars and other vehicles in cities continues to grow. This growth, however, is coupled with an increasing demand for land for buildings, industry, housing, and agriculture purposes. This leaves very little land for parking spaces and slots in the cities. Resulting in massive jams forming daily, drivers stuck in parking lots looking for a spot to park, be it offices, schools, and places of work. These jams result in wasted invaluable accumulated man-hours, time wasted that could, otherwise, be better utilized. Hence, there is a need for an automated parking system, one that is able to utilize the available limited space, reduce lost man-hours, and provide an environmentally friendly solution to the parking-lot jams. In this paper, we investigate the existing technologies for automated parking systems and develop a working prototype of a Rotary Parking System, in-line with the Smart-City needs. Drivers can either use buttons, their smart phones, or other identifying methods to park their cars. The paper presents the mechanical design steps, components used, and the programming of the developed system. Then, the developed system is evaluated. Results show successful implementation of the developed system; a working prototype as well as a simulated system was developed for this work and data show that, indeed, the developed Rotary parking system has the potential to reduce the number of lost man-hours wasted on parking cars and help reduce its related stress, further improving the quality of life there.
机译:随着人口的持续增长,城市中汽车和其他车辆的数量持续增长。但是,这种增长与对用于建筑,工业,住房和农业目的的土地的需求不断增加相结合。这几乎没有土地在城市中用作停车位和插槽。导致每天形成大量拥堵,司机被困在停车场中寻找停车位,无论是办公室,学校还是工作地点。这些堵塞导致浪费宝贵的累计工时,浪费时间,否则可以更好地利用它。因此,需要一种自动停车系统,该系统能够利用可用的有限空间,减少工时损失,并为停车位拥堵提供环境友好的解决方案。在本文中,我们研究了自动泊车系统的现有技术,并根据智能城市的需求开发了旋转式泊车系统的工作原型。驾驶员可以使用按钮,智能手机或其他识别方法来停放汽车。本文介绍了机械设计步骤,使用的组件以及所开发系统的编程。然后,评估开发的系统。结果表明已成功开发了该系统;为此工作开发了一个工作原型以及一个模拟系统,数据表明,事实上,开发的旋转停车系统具有减少浪费在停车位上的工时数量并帮助减轻其相关压力的潜力,进一步改善那里的生活质量。

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