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Design and evaluation of a Turbo-Generator as an Auxiliary Power Unit for hybrid vehicles

机译:涡轮发电机作为混合动力车辆辅助动力装置的设计与评估

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Hybrid powertrain technology is developing day by day and is proving more valuable than electric and fuel cell vehicles. The main focus of the paper is to understand the parametric design of the turbogenerator. The turbogenerator uses waste energy from the exhaust gases and converts it into electrical energy which is stored in the battery. The design strategy is developed in two phases and explained. The first phase is the turbine design in which the engine thermodynamic calculations for engine exhaust are performed. Based on the calculations, a new exhaust manifold is designed to optimise the performance of the turbogenerator. The second phase comprises the permanent magnet synchronous generator design in which the sizing of the hybrid powertrain is the primary aspect which also later becomes the boundary condition for the generator design. The turbogenerator is designed for a parallel hybrid powertrain which is compared to a turbocharged gasoline engine. This main aim for comparison of two engines is to illustrate the significance of hybrid technology having an auxiliary power unit.
机译:Hybrid动力总成技术在日期为发展中国家,证明比电动和燃料电池车更有价值。本文的主要重点是了解涡轮机电器的参数化设计。涡轮机电器使用来自废气的废能,并将其转换成存储在电池中的电能。设计策略分两期开发并解释。第一阶段是涡轮机设计,其中执行发动机排气的发动机热力学计算。基于计算,新的排气歧管旨在优化涡轮机构的性能。第二阶段包括永磁同步发电机设计,其中混合动力系的尺寸是主要方面,其也后来成为发电机设计的边界条件。涡轮机构设计用于并联混合动力系,其与涡轮增压汽油发动机进行比较。这种主要目的是对两个发动机进行比较是说明具有辅助动力单元的混合动力技术的重要性。

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