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SYSTEM IDENTIFICATION OF HUMAN LEG SPRING STIFFNESS DURING RHYTHMIC JUMPING ON A PERCEPTIBLY MOVING SURFACE

机译:在明显移动表面上有节奏跳跃期间人腿春刚度的系统识别

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In recent years, various man-made structures, such as grandstands and footbridges, have shown significant vibration problems during human jumping causing concern for maintenance and serviceability. To understand the interactions observed between a human and a structure, a 5.5m timber beam was constructed and instrumented. This was designed to simulate a cantilever tier of a grandstand, with similar natural frequency and damping ratio to the full-scale structure and with a similar mass ratio of a single human to the beam as for a crowd to the full-scale structure. Measurements of accelerations and displacements of both the jumper and beam, and of the contact force between them, were acquired. Tests for a range of target jumping frequencies, from below to above the structure's natural frequency, were performed to identify the jumper's dynamics and the induced vibrations of the structure and to observe interactions. System identification techniques were performed to evaluate and model the human leg mechanics of a jumper on a vertically oscillating surface. Force-displacement curves, for both relative Gumper to beam) and absolute displacements, have been obtained. The corresponding leg spring stiffness has been evaluated using a linear fit. Variations in the stiffness for different jumping frequencies is discussed.
机译:近年来,各种人造的结构,如浇筑物和脚架,在人类跳跃过程中表现出显着的振动问题,导致维护和维修性的关注。为了理解人体和结构之间观察到的相互作用,构造和仪器构造了5.5米的木梁。这被设计用于模拟正面的悬臂层,具有与全尺寸结构相似的固有频率和阻尼比,并且具有与束的单个人的质量比相似,因为人群到满量程结构。获取跳线和光束的加速度和位移以及它们之间的接触力的测量。进行一系列目标跳跃频率的测试,从下方到上述结构的自然频率,进行了识别跳线的动态和结构的诱导振动并观察相互作用。进行系统识别技术以评估和模拟垂直振荡表面上的跳线的人腿力学。已经获得了对梁的力 - 位移曲线,用于梁的相对伸出梁)和绝对位移。使用线性配合评估了相应的腿部弹簧刚度。讨论了不同跳跃频率的刚度的变化。

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