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Minimization of electro-mechanical interaction with posicast strategies for more-electric aircraft applications

机译:在更多的电动飞机应用中,采用正演策略最小化机电相互作用

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摘要

This paper studies strategies to minimize the electromechanical interaction (EMI) within aircraft power systems. With the growth of electrical power on-board aircraft, the interaction between the electrical systems and the engine core will become significant. The behaviour of electrical loads (on/off, transient etc.) will have significant impacts on the engine shaft, such as producing transient vibrations, creating stability problems and reducing the efficiency etc. To avoid these problems, an advanced electrical power management system (PMS) is required. This paper introduces novel loading methods for PMS applications to minimize the interactions between electrical and mechanical systems. The strategies, referred as Single Level Multi-edge Switching Loads (SLME), Multilevel Loading (MLL), and Multi-load Single Level Multi-edge Switching Loads (MSLME) are developed based on the Posicast method. An insight look of the developed technique has been studied using the zero-pole root locus. It is demonstrated that the excited poles in the system are cancelled by the addition of zeros, and thus supressed the EMI vibrations.
机译:本文研究了使飞机动力系统内的机电相互作用(EMI)最小化的策略。随着机上电力的增长,电气系统与发动机核心之间的相互作用将变得十分重要。电负载的行为(开/关,瞬态等)将对发动机轴产生重大影响,例如产生瞬态振动,产生稳定性问题并降低效率等。为避免这些问题,先进的电源管理系统( PMS)为必填项。本文介绍了用于PMS应用程序的新颖加载方法,以最大程度地减少电气和机械系统之间的相互作用。基于Posicast方法,开发了称为单级多边缘交换负载(SLME),多级负载(MLL)和多负载单水平多边缘交换负载(MSLME)的策略。使用零极点根轨迹研究了已开发技术的真知灼见。事实证明,系统中的励磁极通过加零来消除,从而抑制了EMI振动。

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