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首页> 外文期刊>Journal of the American Helicopter Society >Optimization of Circular Force Generator Placement for Rotorcraft Hub Force and Moment Cancellation
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Optimization of Circular Force Generator Placement for Rotorcraft Hub Force and Moment Cancellation

机译:旋翼机轮毂力和力矩抵消的圆形力发生器布置优化

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摘要

High-speed forward flight in helicopters causes high vibratory loads at the rotor hub, which are transmitted into the fuselage. This results in pilot fatigue and high maintenance requirements. Antivibration devices or vibration absorbers may he placed near the hub to reduce vibration transmission, whereas active vibration control systems may typically sense and reduce forces in specific areas of the fuselage. This paper focuses on developing strategies for optimal deployment (sizing, placement, and control) of circular force generators (CFGs) for vibration cancellation. Particle swarm optimization was used to carry out the optimization for two different load cases corresponding to different flight conditions. Converged solutions for CFG placement were obtained for different individual load cases, multiple-load cases, constrained and unconstrained actuator locations, and different numbers of actuators. Two CFGs were found to be sufficient to cancel hub loads for a single-load case. When two load cases are considered in multiobjective optimization, three actuators can substantially cancel the hub loads (to within 1%). Using four actuators can cancel the hub loads to within 0.1%. Finally, performance under actuator failure was considered as a way to distinguish among otherwise similarly performing placement solutions.
机译:直升机的高速向前飞行会在旋翼毂上产生高振动载荷,该振动载荷会传递到机身上。这导致飞行员疲劳和高维护要求。可以在轮毂附近放置防振装置或减震器以减少振动传递,而主动式振动控制系统通常可以感应并减小机身特定区域中的力。本文关注于开发用于消除振动的圆形力发生器(CFG)的最佳部署(尺寸,放置和控制)的策略。使用粒子群算法对两个不同的载荷工况进行了优化,分别对应不同的飞行条件。针对不同的单个载荷工况,多重载荷工况,受约束和不受约束的执行器位置以及不同数量的执行器,获得了CFG放置的收敛解决方案。发现两个CFG足以抵消单负载情况下的轮毂负载。在多目标优化中考虑两个负载情况时,三个执行器可以基本抵消轮毂负载(在1%以内)。使用四个执行器可以将轮毂负载抵消到0.1%以内。最终,执行器故障下的性能被认为是区别执行性能相似的放置解决方案的一种方法。

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  • 来源
    《Journal of the American Helicopter Society》 |2019年第1期|012002.1-012002.8|共8页
  • 作者单位

    Penn State Univ, University Pk, PA 16802 USA;

    Penn State Univ, Coll Engn, Aerosp Engn, University Pk, PA 16802 USA|Penn State Univ, Coll Engn, Res, University Pk, PA 16802 USA;

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