首页> 外文会议>ASME international mechanical engineering congress and exposition >A COMPARATIVE STUDY OF RAPID QUADRUPEDAL SPRINTING AND TURNING DYNAMICS ON DIFFERENT TERRAINS AND CONDITIONS: RACING GREYHOUNDS GALLOPING DYNAMICS
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A COMPARATIVE STUDY OF RAPID QUADRUPEDAL SPRINTING AND TURNING DYNAMICS ON DIFFERENT TERRAINS AND CONDITIONS: RACING GREYHOUNDS GALLOPING DYNAMICS

机译:不同地形和条件下快速四足动向旋转和转向动力学的比较研究:种族灰熊奔腾动力学

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Identifying optimum athletic race track surfacing for greyhounds • to reduce risk of injuries is a challenging practice as there are several single and coupled variables that should be considered as risk factors. To study the impact of bend and straight sections, surface type and camber, on biomechanics of galloping quadrupeds, an inertial measurement unit (IMU). has been used to measure the associated galloping accelerations. The IMU was sewn into a pocket located on the back of the greyhounds racing jacket positioned between the two forelegs. Simultaneous kinematics were performed using high frame rate (HFR) videos for calibrating IMU data. The results showed that there were lower G-forces on galloping on grass than wet sand which is consistent with the mechanical behavior of grass (grass is softer than wet sand). Moreover, galloping around the bend had higher G-forces than galloping along the straight section suggesting an excessive force is applied on the greyhound's limbs due to centrifugal force. A cambered bend assisted the greyhounds in having a smoother gait and lower G-forces when compared to a flat bend. The results reported in this paper will not only be beneficial for the welfare of racing greyhounds, but will also contribute in the simulation of legged locomotion for bio-inspired engineering and robotics.
机译:为减少猎犬受伤的风险,确定最佳的赛道表面•以减少受伤风险是一项具有挑战性的做法,因为应将多个单独的变量和耦合变量视为危险因素。为了研究弯曲和笔直截面,表面类型和外倾角对四足舞动的生物力学(惯性测量单元,IMU)的影响。已用于测量相关的驰acceleration加速度。 IMU缝在位于两个前腿之间的猎狗赛车夹克背面的一个口袋中。使用高帧频(HFR)视频进行同步运动学以校准IMU数据。结果表明,在草地上奔腾时的G力低于湿沙,这与草的力学行为一致(草比湿沙柔软)。此外,弯曲处的舞动比沿直线部分的舞动具有更高的G力,这表明由于离心力在灵缇的四肢上施加了过大的力。与平弯相比,弯弯有助于灵缇犬步态更平稳,G力更低。本文报道的结果不仅将有益于赛狗的健康,而且还将为生物启发工程和机器人技术对腿部运动的仿真做出贡献。

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