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An Economic and In-Service Emissions Analysis of Conventional, Hybrid and Electric Vehicles for Australian Driving Conditions

机译:澳大利亚驾驶条件的常规,混合动力和电动车辆的经济和役排放分析

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Hybrid and fully electric vehicles are becoming more common as a response to rising fuel prices and greenhouse considerations. While the benefits of electrification on urban air quality have been studied quite widely, financial assessments of the various alternative vehicle forms are less common, particularly for Australian driving conditions. The aim of this paper is therefore to identify the scenarios under which different vehicle configurations are attractive to the vehicle owner. A Class-E conventional vehicle is compared with full-electric, plug-in hybrid, parallel hybrid, series hybrid and mild hybrid electric vehicle configurations. A simulation model of a conventional internal combustion engine based large sized car is developed and validated against experimental data. The conventional vehicle model is then systematically altered to obtain its increasingly electric variants. The fuel consumption and greenhouse gas emissions are simulated on the legislative NEDC drive cycle and the more representative Australian Urban Drive Cycle (AUDC). The outcomes of these tests are used to estimate the total cost of ownership and in-service emissions, thus allowing the cost of emissions mitigation to be approximated for the different vehicles. Different scenarios are considered for the pricing of energy and major powertrain components. This provides a baseline assessment based on current prices and projections, as well as 'electrification favorable' and 'electrification unfavorable' scenarios. The impact on vehicle emissions of significant penetration of renewable energy into the Australian electricity grid is also considered.
机译:混合动力和全电动汽车变得越来越普遍,作为对燃料价格和温室考虑的反应。虽然已经过分研究了城市空气质量的电气化的好处,但各种替代车辆形式的财务评估不太普遍,特别是对于澳大利亚驾驶条件。因此,本文的目的是识别不同车辆配置对车主具有吸引力的场景。将A类传统车辆与全电动插入式混合,并联混合动力,串联混合动力和温和的混合动力电动车辆配置进行比较。开发并验证了基于传统的内燃机基于实验数据的仿真模型。然后系统地改变传统的车辆模型以获得其越来越多的电动变体。燃油消耗和温室气体排放是在立法核武器驱动周期和澳大利亚城市驱动周期(AUDC)的更具代表性。这些测试的结果用于估算所有权和服务中的总成本,从而允许排放减缓的成本近似为不同的车辆。不同的场景被认为是能源和主要动力总成部件的定价。这提供了基于当前价格和预测的基线评估,以及“电气化有利”和“电气化不利”情景。还考虑了对澳大利亚电网将可再生能源显着渗透到澳大利亚电网的影响。

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