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A traveling wave fitting method for robotic fish with a multi-joint caudal fin

机译:多关节尾鳍的机器鱼行波拟合方法

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Aimed at the carangidae robotic fish with a multi-joint caudal fin, a circle threshold interval discretion (CTID) method is proposed to fit the traveling wave of the fish body. Firstly, a circle is established by using the known length of tail joint as a radius, and there is a intersection point between the circle and the traveling wave of fish body. Then, the values of error equation are respectively calculated by sampling a threshold interval which is close to the intersection point. As a result, a coordinate would be obtained at the point of the minimum value of error equation, thus the traveling wave could be perfectly fitted at one moment. Finally, all joints are fitted for a whole swing period by adopting this type of method. Simulation images show the fitting method could get perfect fitting effect, and it would improve the propulsion efficiency of robotic fish.
机译:针对具有多关节尾鳍的长尾car机器人鱼,提出了一种圆阈值区间自由度(CTID)方法来拟合鱼体的行波。首先,以已知的尾节长度为半径建立一个圆,该圆与鱼体的行波之间有一个交点。然后,通过对接近交点的阈值间隔进行采样来分别计算误差方程的值。结果,将在误差方程的最小值的点处获得坐标,因此行波可以在一瞬间完美地拟合。最后,通过采用这种方法,所有关节都适合整个摆动周期。仿真图像表明,该拟合方法可以获得理想的拟合效果,提高了机器人鱼的推进效率。

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