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Analysis of a fuel cell-internal combustion engine series hybrid vehicle.

机译:燃料电池-内燃机系列混合动力汽车的分析。

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A theoretical analysis of a Fuel Cell - Internal Combustion Engine Series Hybrid Vehicle was conducted using ADVISOR software. ADVISOR is an open source vehicle simulation software developed by NREL. The main purpose of this work was to visualize a fuel cell (FC) - internal combustion engine (ICE) powered series hybrid vehicle with no energy storage system like a battery or an ultracapacitor. The study included plotting the fuel economy of the vehicle and dynamic response of the FC and the ICE to the load requirements under two different test conditions. 1985 Toyota pick-up truck parameters were used to model the vehicle. The conventional vehicle has a 72 kW (@4500 rpm), 172 Nm (@2600 rpm) Toyota 2.4 L SI gasoline engine. The empirical data in the ADVISOR software were extensively used to model the various components of the series vehicle like fuel cell, power bus, electric motor, generator and gear box. Modifications were made to the default series control logic and Matlab sub-routines were written to plot the fuel use data from the simulation. Various degrees of hybridization (in increments of 10% power from fuel cell) from conventional up to a complete fuel cell vehicle was simulated. Two driving cycles, Urban Dynamometer Driving Schedule and US 06 cycle, that collectively represent the overall vehicle usage, were used to find the fuel economy of the vehicle. Also, a cost analysis of fuel converters for the conversion was carried out. The results of the simulation show that an FC-ICE series hybrid with a base power from a 15 kW FC and a down sized 57 kW ICE will be the best design for converting the conventional 72 kW gasoline vehicle. This 20% hybridized truck, at an additional investment of 5.7% of fuel converter cost, will improve the fuel economy of the vehicle by 73% within the city and 49.2% on highways.
机译:使用ADVISOR软件对燃料电池-内燃机系列混合动力汽车进行了理论分析。 ADVISOR是NREL开发的开源车辆仿真软件。这项工作的主要目的是可视化燃料电池(FC)–内燃机(ICE)供电的串联混合动力汽车,它没有像电池或超级电容器这样的储能系统。该研究包括绘制车辆的燃油经济性以及FC和ICE在两种不同测试条件下对负载要求的动态响应。 1985年,将丰田轻型货车参数用于车辆建模。常规车辆具有72 kW(@ 4500 rpm),172 Nm(@ 2600 rpm)的丰田2.4 L SI汽油发动机。 ADVISOR软件中的经验数据被广泛用于对系列车辆的各个组成部分进行建模,例如燃料电池,电源总线,电动机,发电机和齿轮箱。对默认的串联控制逻辑进行了修改,并编写了Matlab子例程以绘制来自模拟的燃料使用数据。模拟了从传统到完整的燃料电池汽车的各种杂交程度(燃料电池以10%的功率递增)。两个行驶周期,即城市测功机行驶时间表和US 06周期,共同代表了车辆的总体使用情况,用于查找车辆的燃油经济性。另外,进行了用于转换的燃料转换器的成本分析。仿真结果表明,FC-ICE系列混合动力车具有15 kW FC的基本功率和缩小的57 kW ICE,将是转换常规72 kW汽油车的最佳设计。这款20%混合动力卡车的投资额为燃料转化器成本的5.7%,将使城市内车辆的燃油经济性提高73%,在高速公路上提高49.2%。

著录项

  • 作者单位

    University of Nevada, Las Vegas.;

  • 授予单位 University of Nevada, Las Vegas.;
  • 学科 Engineering Mechanical.
  • 学位 M.S.
  • 年度 2007
  • 页码 52 p.
  • 总页数 52
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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