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Design and performance improvements of solar based efficient hybrid electric vehicle

机译:基于太阳能的高效混合动力电动汽车的设计和性能改进

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摘要

Hybrid energy in electric vehicles has been globally accepted as the fossil fuels will be exhausted by the middle or end of 21st century. The hybrid vehicles have emerged as a major source of clean and renewable energy to support the never-ending demand of vehicles. The main idea of the paper is the use of hybrid energy in working of e-rickshaw, which has become the most favorite area of research in automobile industry, recently. The proposed model is powered by lead-acid battery and this battery is charged by either using electric plug or solar panel. In the present study, hardware model has been analyzed e-rickshaw in terms of different parameters like mileage, charging and discharging time of battery, charging current, discharging current from the performance as well as security point of view. The hardware model has been developed with Photovoltaic (PV) module, capacitor bank, and Arduino circuit. Here, a modified e-rickshaw has been developed which has improved vehicle performance as compared to existing conventional e-rickshaw. The mileage has improved from 80 to 120.61 km and starting current has been reduced from 57 to 41 A on full load conditions. This has enhanced the battery life and Arduino circuit was implemented to enhance security features. The proposed model of e-rickshaw has improved vehicle performance as compared to existing conventional e-rickshaw in terms of mileage, starting current, battery life, and security feature of the vehicle.
机译:电动汽车中的混合能源已被全球接受,因为化石燃料将在 21 世纪中叶或末耗尽。混合动力汽车已成为清洁和可再生能源的主要来源,以支持汽车永无止境的需求。该论文的主要思想是混合能源在电动人力车工作中的使用,这已成为近年来汽车工业中最受欢迎的研究领域。所提出的模型由铅酸电池供电,该电池通过使用电源插头或太阳能电池板充电。在本研究中,从性能和安全的角度分析了电动人力车的硬件模型,包括电池的里程、充放电时间、充电电流、放电电流等不同参数。硬件模型由光伏 (PV) 模块、电容器组和 Arduino 电路开发。在这里,开发了一种改进的电动人力车,与现有的传统电动人力车相比,它提高了车辆性能。里程从 80 公里提高到 120.61 公里,满载条件下的启动电流从 57 A 降低到 41 A。这延长了电池寿命,并实施了Arduino电路以增强安全功能。与现有的传统电动人力车相比,所提出的电动人力车模型在行驶里程、启动电流、电池寿命和车辆安全功能方面提高了车辆性能。

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  • 作者单位

    Department of Electrical andElectronics Engineering, SSTC-SSGI, Bhilai, India;

    Department ofEnergy and Environmental Engineering, Chhattisgarh SwamiVivekanand Technical University (CSVTU), Bhilai, Chhattisgarh,491107, India;

    Department of Electrical Engineering, NationalInstitute of Technology Raipur, Raipur, IndiaUniversity Teaching Department, Chhattisgarh SwamiVivekanand Technical University (CSVTU), Bhilai, Chhattisgarh,491107, IndiaUniversity Teaching Department, ChhattisgarhSwami Vivekanand Technical University (CSVTU), Bhilai,Chhattisgarh, 491107, India, and Department of Civil Engineering,National Institute of Technology Raipur, Raipur, India;

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  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类
  • 关键词

    Arduino; e-rickshaw; hybrid electric vehicle; PV module; solar energy;

    机译:Arduino;电动人力车;混合动力汽车;光伏组件;太阳能;
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