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Simulation of a High Fidelity Turboshaft Engine-Alternator Model for Turboelectric Propulsion System Design and Applications

机译:涡轮电推修系统设计与应用的高保真涡轮机轴交流发电机型号的仿真

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摘要

The term sustainability became a popular subject both in the automotive industries and in the aerospace industries. Increasing and threatening environmental pollution problems and reduction in limited fuel sources are motivating either industries and academicians to develop alternative power systems to sustain more healthier and economical life in the long term. One innovation that has been researched in the automotive industry is all electric and hybrid electric propulsion concepts. These concepts have also been proposed as alternative solutions for aviation. These novel propulsion technologies are composed of a gas turbine/internal combustion engine structure (necessary for hybrid electric and turboelectric propulsion systems) and/or energy storage components (battery, fuel cell and so on.) with multiple electric motors respectively. In this paper, simulation of a high fidelity turboshaft engine-alternator model for turboelectric propulsion system is derived. To develop an aero-thermal engine model, GE T700 turboshaft engine data is used and constructed model is connected to an alternator model on MATLAB/Simulink environment. Open-loop simulations are carried out and satisfactory results are obtained.Simulation results are compared to the real engine design point data. Results show that there are acceptable differences between the simulation results and the real engine data. The power balances between compressor - high pressure turbine and power turbine – alternator are proven in the mathematical model. It is expected that the proposed model can be easily extended to power system design and power management studies in turboelectric propulsion systems and also in other suitable novel propulsion systems.
机译:该术语可持续发展成为汽车行业和航空航天行业的受欢迎主题。增加和威胁环境污染问题和有限燃料来源的减少正在激励行业和院士,开发替代电力系统,以长期维持更健康和经济的生活。在汽车工业中研究的一种创新是所有电气和混合动力推进概念。这些概念也被提议作为航空的替代解决方案。这些新颖的推进技术由燃气轮机/内燃机结构(混合电动和涡轮电力推进系统所需)和/或能量存储部件(电池,燃料电池等)分别具有多个电动机。本文推导了涡轮电推进系统的高保真涡轮轴交流发电机型号的仿真。要开发通风发动机型号,使用GE T700涡轮轴引擎数据并构造模型连接到Matlab / Simulink环境的交流发电机模型。进行开环模拟,获得令人满意的结果。将结果与真正的发动机设计点数据进行比较。结果表明,仿真结果与真实发动机数据之间存在可接受的差异。压缩机 - 高压涡轮机和动力涡轮 - 交流发电机之间的功率余额在数学模型中被证明。预计拟议的模型可以很容易地扩展到涡轮电力推进系统的电力系统设计和电力管理研究,以及其他合适的新型推进系统。

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