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Power Efficient e-Bike with Terrain Adaptive Intelligence

机译:具有地形自适应智能的节能电动自行车

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Electric bicycles or e-bikes are gaining momentum in the market as they are offering a smooth, noiseless and pollution free option for individual transportation in cities as well as in countryside. E-bikes are usually with a battery powered electric motor drive with an additional option for pedaling. In this work a low cost e-bike was designed and developed with a brushless DC hub motor with controllers. For smart control, smartphone was used a console and the e-bike can be controlled using a mobile application which was connected to the e-bike through Bluetooth. The controller will pick the gradient of the terrain and will control the power of the motor, which results in energy saving. Predicted range of the e-bike, speed, acceleration and total distance covered were displayed in the console along with the geographical position on the map and throttle control options. The bike with the proposed control tested and the results were giving a reduction in current drawn from the battery.
机译:电动自行车或电动自行车在城市和农村为个人运输提供了一种平稳,无噪音和无污染的选择,从而在市场上获得了动力。电动自行车通常是由电池驱动的电动马达驱动的,另外还有踏板选择。在这项工作中,设计并开发了带有控制器的无刷直流轮毂电动机的低成本电动自行车。对于智能控制,使用智能手机作为控制台,并且可以使用通过蓝牙连接到电动自行车的移动应用程序来控制电动自行车。控制器将选择地形的坡度并控制电动机的功率,从而节省了能源。电动自行车的预测范围,速度,加速度和所覆盖的总距离以及地图上的地理位置和油门控制选项均显示在控制台中。带有建议的控制装置的自行车经过测试,其结果是减少了从电池汲取的电流。

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