通用电动汽车充电站的设计与实现

Kandasamy V, Mohit Kumar R, Nikil Venkatesh K, Harshith S
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引用次数: 0

摘要

世界上所有的人都需要从一个地方搬到另一个地方来满足他们的日常需求。为了克服这一要求,传统车辆被开发出来。这些车辆只使用汽油、柴油、天然气等化石燃料。通过消耗这些燃料,他们将排放二氧化碳作为他们的副产品,导致全球变暖,释放温室气体和其他有害影响。这导致了电动汽车(EV)的发明。这种电动汽车只消耗电力,不需要任何润滑剂和燃料。电动汽车的主要缺点是行驶时间有限,因为充电的范围较小。目前,电动汽车充电站比汽油/柴油汽车要少。电动汽车面临的主要挑战之一是在充电站内为车辆充电,这涉及到增加的建设成本,并且在为单个电池电压类型建造充电站时需要大量的空间。在极少数情况下,如果发现了电动汽车充电站,它可能并不适用于所有类型的电动汽车型号,它可能会根据公司型号的可用性而有所不同。这导致司机寻找其他充电站或即将到来的充电站,对特定或选择性充电站有巨大的需求。为了克服这种情况,本研究建立了一个原型,以增强所有电动汽车两轮车在一个充电站充电。所提出的模型可以为两轮车充电,其输入电压为52V, 60V, 72V。这三个电压是根据电动汽车(ev)趋势选择的。52V代表Ather 450x型号,60V代表TVS Iqube型号,72V代表Hero Photon型号。为了开发可行的解决方案,本研究使用多抽头变换变压器来控制这三个输出电压给车辆,使其易于充电。此外,本研究还创建了一个移动应用程序来检查电池状态,并显示充电时的电池百分比和剩余充电时间。该应用程序可以在充电时改变所需的输入电压。此外,本研究工作还实现了一个特殊的功能,即自动切断电源,当车辆电池充满电时,自动切断电源。这避免了电池过载时发生爆炸的危险情况。这个特殊的功能在我们的原型中是一件了不起的事情。使用这种类型的充电站有很多优点,如充电电动汽车电池,其中包含不同的电压,如52、60、72伏,实现自动切断过程,并使用移动应用程序切换所需的电压。使用该系统的唯一缺点是所建议的模型不能同时为多辆车充电。
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Design and Implementation of Common EV Charging Station
All people around the world requires to move from one place to another for their daily needs. To overcome this requirement conventional vehicles were developed. These vehicles run only by the means of fossil fuels such as petrol, diesel, gas etc. By consuming these fuels, they will exhaust CO2 as their biproduct which causes global warming, release of greenhouse gas and other harmful effects. This leads to the invention of the Electric Vehicles (EV). This E-vehicles consumes only the electricity to run, and it does not require any lubricants and fuels. The main drawback of the Electric vehicles is the running time is limited due to the less amount of range in a charge. Electric vehicle charging stations are fewer compared to the petrol/diesel bunk at present. One of the main challenges for the electric vehicle is charging their vehicles in the charging stations and it involves added construction cost and requires lots of space while constructing a charging station for an individual battery voltage type. In a rare case if an Electric vehicle charging station is spotted, it may not be available for the all the type of electric vehicle models, it might vary according to the company models availability. This leads the driver to look for other charging station or upcoming charging station and there is huge demand on the particular or selective charging station. To overcome this situation, this study has built a prototype to enhance all the electric vehicle two-wheelers to charge their vehicles in a single charging station. The proposed model can charge the two-wheelers, which has their input voltages as 52V, 60V, 72V volts. These three voltages are selected based on the trending Electric Vehicles (EVs). 52V represent the Ather 450x model, 60V represent the TVS Iqube model, and 72V represent the Hero Photon model. To develop a feasible solution, this study has used the multi tap changing transformer to control these three-output voltage to the vehicle, which can be easily charged. Further, this study has created a mobile application to check the battery status and display the battery percentage while charging and time left for charging. This application can change the required input voltage at the time of charging. In addition to, this research work has implemented a special feature, which is auto cut off, which shutdowns the supply when the vehicles battery is fully charged. This avoids the critical situation of bursting of batteries when they are overloaded. This special feature is a feather in hat in our prototype. There are many advantages in using this type of charging station like charging the electric vehicle batteries, which contain different voltages such as 52, 60, 72 Volts, auto cut-off process is implemented and mobile application is used to switch the required voltages. The only demerit while using this system is the proposed model cannot be able to charge more than one vehicle at a time.
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