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Real-Time Simulation of a More Electric Aircraft Power Generation and Distribution System

机译:更电机发电和分配系统的实时仿真

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More Electric Aircraft (MEA) technology is leading aircraft manufacturers to replace traditional hydraulic and pneumatic systems by electr ical components, resulting in weight and maintenance cost reduction, and in the increase of Mean Time Between Failures (MTBF). This has for effect of increasing the complexity of the Electrical Power Generation and Distribution System (EPGDS) of the aircraft and degrading its power quality. As a result, testing and validation must be performed early in the design stages, which has traditionally been done via the use of physical testbeds which involve significant amount of hardware. However, because of the electrical nature of MEA, virtual testbeds are now increasingly used, which offer greater flexibility and are less costly than conventional testbeds. As such, OPAL-RT is developing real-time simulators that integrate MEA systems models into a real-time co-simulation platform. This paper provides simulation results that showcase OPAL-RT s real-time simulation capabilities in the context of EPGDS simulation, applied to a generic example inspired from public domain publication regarding the Boeing 787 EPGDS.
机译:更多的电气飞机(MEA)技术是主要的飞机制造商,通过电术部件取代传统的液压和气动系统,导致重量和维护成本降低,并且在故障(MTBF)之间的平均时间增加。这对于提高飞机的电力发电和分配系统(EPGDS)的复杂性并降低其功率质量的影响。结果,测试和验证必须在设计阶段的早期执行,传统上通过使用涉及大量硬件的物理测试平台来完成。然而,由于MEA的电气性质,现在越来越多地使用虚拟试验台,这提供了更大的灵活性,并且比传统测试平台更昂贵。因此,Opal-RT正在开发将MEA系统模型集成到实时共模平台的实时模拟器。本文提供了在EPGDS仿真的背景下展示Opal-RT的实时模拟能力的仿真结果,其应用于来自关于波音787 EPGDS的公共领域出版物的通用示例。

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