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SINGULARITIES IN AXISYMMETRIC VECTORING EXHAUST NOZZLE AND A FEASIBLE SINGULARITY-FREE APPROACH

机译:轴对称矢量喷口中的奇异性和可行的无奇异性方法

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摘要

The singularities are the inherent disadvantage of parallel manipulators, which negatively influence the static properties and motion concreteness of parallel manipulators. An axisymmetric vectoring exhaust nozzle (AVEN). which turn and/or vector the exhaust flow and thrust of the gas turbine engine powering the aircraft, is driven by a symmetrical parallel manipulator to vector the exhaust nozzle universally. The serious negative influences of the singularities existing in the AVEN on the safety and maneuverability of the aircrafts have not been paid enough attention or aware of by the experts in the field. In this paper, two kinds of singularities existing in the AVEN for the nozzle vectoring drive mechanism of the parallel manipulator and the suspending mechanism of the divergent flaps are analyzed at first. To solve these singularities problem and ensure the safety of the aircrafts equipped with the AVEN, a feasible singularity-free approach for parallel manipulators applied in aerospace engineering via adjusting the input kinematic parameters is proposed.
机译:奇异性是并联机械手的固有缺点,这会对并联机械手的静态特性和运动具体性产生负面影响。轴对称矢量排气喷嘴(AVEN)。旋转和/或引导为飞机提供动力的燃气涡轮发动机的排气流和推力由对称的平行操纵器驱动,以通用地引导排气喷嘴。 AVEN中存在的奇异性对飞机的安全性和可操纵性产生了严重的负面影响,但本领域的专家并未对此给予足够的重视或意识到。本文首先分析了AVEN中并联机械手的喷嘴矢量驱动机构和发散襟翼的悬挂机构的两种奇异点。为了解决这些奇异性问题并确保配备AVEN的飞机的安全性,提出了一种通过调整输入的运动学参数对航空航天工程中的并联机械手进行实用的无奇异处理的方法。

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