Power Analysis of Light Electric Vehicles Using Fundamental Calculations
This paper presents a study of the power needed by batteries to drive an electric vehicle for specific purpose using basic theory and fundamental formulas. In order to develop an electric vehicle, the energy and power requirements of the vehicle in various driving environments need to be estimated....
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my.unikl.ir-89842014-12-12T01:38:32Z Power Analysis of Light Electric Vehicles Using Fundamental Calculations M. Sabri, M. Rezal, UniKL MSI Battery Power Electric Vehicle (EV) Vehicle Loads This paper presents a study of the power needed by batteries to drive an electric vehicle for specific purpose using basic theory and fundamental formulas. In order to develop an electric vehicle, the energy and power requirements of the vehicle in various driving environments need to be estimated. The energy efficiency of a vehicle depends primarily upon the specific vehicle design and the environment in which the vehicle is operated. Basic parameters are set off in the beginning such as car weight and much more comprehensive parameter will developed later such as vehicle cruising velocity. Generally, four forces affect vehicle motion; aerodynamic resistance, rolling resistance, climbing resistance and acceleration power. The total of these four forces will result in an estimation of maximum power needed for the electric vehicle. 2014-12-12T01:37:49Z 2014-12-12T01:37:49Z 2012-04 Article M. Sabri et al., 2012, Applied Mechanics and Materials, 165, 48 DOI: 10.4028/www.scientific.net/AMM.165.48 http://www.scientific.net/AMM.165.48 Scientific.net |
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Battery Power Electric Vehicle (EV) Vehicle Loads M. Sabri, M. Rezal, UniKL MSI Power Analysis of Light Electric Vehicles Using Fundamental Calculations |
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This paper presents a study of the power needed by batteries to drive an electric vehicle for specific purpose using basic theory and fundamental formulas. In order to develop an electric vehicle, the energy and power requirements of the vehicle in various driving environments need to be estimated. The energy efficiency of a vehicle depends primarily upon the specific vehicle design and the environment in which the vehicle is operated. Basic parameters are set off in the beginning such as car weight and much more comprehensive parameter will developed later such as vehicle cruising velocity. Generally, four forces affect vehicle motion; aerodynamic resistance, rolling resistance, climbing resistance and acceleration power. The total of these four forces will result in an estimation of maximum power needed for the electric vehicle. |
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M. Sabri, M. Rezal, UniKL MSI |
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M. Sabri, M. Rezal, UniKL MSI |
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M. Sabri, M. Rezal, UniKL MSI |
title |
Power Analysis of Light Electric Vehicles Using Fundamental Calculations |
title_short |
Power Analysis of Light Electric Vehicles Using Fundamental Calculations |
title_full |
Power Analysis of Light Electric Vehicles Using Fundamental Calculations |
title_fullStr |
Power Analysis of Light Electric Vehicles Using Fundamental Calculations |
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Power Analysis of Light Electric Vehicles Using Fundamental Calculations |
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power analysis of light electric vehicles using fundamental calculations |
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Scientific.net |
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2014 |
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http://www.scientific.net/AMM.165.48 |
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13.214268 |