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Power and Thermal Management for Future Aircraft

机译:未来飞机的电力和热管理

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The aircraft power and thermal management system (PTMS) developed by Honeywell combines the functions of an auxiliary power unit (APU), emergency power unit (EPU), environmental control system (ECS), and thermal management system (TMS) in one integrated system. For the F-35 aircraft this approach resulted in a substantial reduction in overall aircraft size and weight as compared to configurations using separate "federated" secondary power systems. Future aircraft incorporating the new more electric architecture (MEA) and energy efficient aircraft (EEA) initiatives are likely to benefit from this integrated approach as well, but they are also likely to require increased electric power generation capability, greater cooling capacity and higher operating efficiency. Further, these aircraft will likely require an adaptive power and thermal management system (APTMS) which can be reconfigured to optimize operation for various flight conditions, diverse missions and for use on a variety of platforms. To provide for these future aircraft needs the incorporation of new technologies and architectures, further integration with other aircraft systems and more advanced control and protection algorithms are considered.
机译:由霍尼韦尔开发的飞机电力和热管理系统(PTMS)将辅助电源单元(APU),应急电源单元(EPU),环境控制系统(ECS)和热管理系统(TMS)的功能相结合的功能。对于F-35飞机,与使用单独的“联合”二次电力系统相比,这种方法导致整体飞机尺寸和重量的大幅降低。未来的飞机还包括新的更多电气建筑(MEA)和节能飞机(EEA)举措也可能从这种综合方法中受益,但它们也可能需要提高发电能力,更高的冷却能力和更高的操作效率。此外,这些飞机可能需要自适应电源和热管理系统(APTMS),其可以重新配置,以优化各种飞行条件,多样性任务和在各种平台上使用的操作。为这些未来的飞机提供新技术和架构的加入,与其他飞机系统的进一步集成以及更先进的控制和保护算法。

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