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Development of a multiaxis active seat mount to mitigate helicopter aircrew whole-body vibration exposure

机译:开发多轴主动式座椅安装座,以减轻直升机机组人员的全身振动

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This article presents the development and evaluation of a proof-of-concept multiaxis and actively controlled helicopter seat mount for aircrew whole-body vibration reduction. The multiaxis seat mount is designed to be installed between the helicopter seat floor and the seat supporting structure to minimize the impact on crashworthiness requirements of the helicopter seat. The design involves multiple miniature force actuators to counteract the vibrations of the seat frame and occupant transmitted from the helicopter floor in three orthogonal directions. The actuators are controlled by an adaptive feedforward filtered-x least mean square algorithm to cancel the helicopter floor vibration input. The prototype active seat mount design was tested in various configurations with a shaker table providing representative Bell-412 helicopter vibration inputs. Test results demonstrated that the vibrations of the seat frame and mannequin occupant body were suppressed simultaneously, and the major N/rev harmonic peaks of the occupant's whole-body vibration were reduced by more than 20 dB. This demonstrated that the multiaxis active seat mount design can mitigate the whole-body vibration exposure of the helicopter aircrew to improve their ride quality and reduce adverse health effect.
机译:本文介绍了用于减少机组人员整体振动的概念验证多轴主动控制直升机座椅支架的开发和评估。多轴座椅底座设计为安装在直升机座椅地板和座椅支撑结构之间,以最大程度地减少对直升机座椅防撞性要求的影响。该设计涉及多个微型力致动器,以抵消在三个正交方向上从直升机地板传来的座椅框架和乘员的振动。执行器由自适应前馈滤波-x最小均方算法控制,以消除直升机地板的振动输入。主动座椅原型设计经过各种配置的振动台测试,可提供代表性的Bell-412直升机振动输入。测试结果表明,同时抑制了座椅框架和人体模型乘员的振动,并且乘员全身振动的主要N / rev谐波峰值降低了20 dB以上。这证明了多轴主动式座椅安装设计可以减轻直升机机组人员的全身振动暴露,从而改善其乘坐质量并减少不利的健康影响。

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