军用飞机F - 35电力系统瞬态载荷影响的详细建模与研究

I. Khan, Syed Rahman
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引用次数: 1

摘要

军用飞机一直是创新技术的旗手,以增强性能、减轻重量、提高可靠性和推进导航/控制自动化。军用飞机,如F-35,旨在实现空中监视,隐身作战和缠斗能力。为了实现最佳设计,F-35采用了一种创新的集成子系统设计方法。这一概念导致了一套创新但复杂的子系统正在开发并应用于军用飞机F-35。本文重点探讨了F-35的电力系统(EPS)驱动不同类型负载的数学建模,包括关键航空电子负载、大功率作动器和环境控制系统负载。飞行剖面显示不同的操作模式是用来突出间歇性和电力需求在各种模式。在此基础上,在MATLAB/SIMULINK®中进行了详细的数学模型仿真。仿真结果表明,电静液作动器系统负载的不对称分布和间歇性分别导致了线路额定功率的5%和15.8%的功率不平衡。为了解决这一问题,提出了一种改进的EPS,采用三有源桥式转换器,能够在两个HVDC母线之间交换受控的双向功率,从而改善动态平衡和运行效率,而不需要额外的成本和额外的重量。
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Detailed Modeling and Investigation of Impact of Transient Loading on Electrical Power System of Military Aircraft F – 35
Military aircraft have always been the flag-bearers of innovative technologies to enhance performance capabilities, reduce weight, improve reliability, and advance navigation/control automation. Military aircraft such as the F-35 is designed to achieve aerial surveillance, stealth operation, and dogfighting capabilities. To achieve an optimal design, an innovative integrated subsystem design approach is adopted in F-35. This concept has resulted in a set of innovative but complex subsystems being developed and employed in military aircraft F-35. This paper focuses on exploring and mathematical modeling of the electrical power system (EPS) of F-35 powering different load types, including critical avionic loads, high-power actuators, and environmental control system loads. A flight profile showing different modes of operation is used to highlight the intermittency and power requirement in various modes. Based on this, a detailed mathematical model is simulated in MATLAB/SIMULINK®. Based on the simulation results, asymmetrical load distribution and intermittency of the electrohydrostatic actuator system (EHAS) load resulted in a power imbalance of 5% and 15.8% of line rating, respectively, is highlighted. To address 747146this concern, a modified EPS is proposed, with a triple-active bridge converter, capable of exchanging controlled bidirectional power between the two HVDC buses thereby improving dynamic balancing and operational efficiency with no extra cost and additional weight.
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