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Factors of Length Ratio and Mass at Chaos of Double Pendulum System

机译:双摆系统混沌长度和质量因素

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The double pendulum consists of two pendulums attached with the pivot of the second pendulum located at the end of the first pendulum by a rigid bar, massless and considers the effect of gravity. The double pendulum system has strange and unpredictable behaviour. Chaos in a double pendulum system is usually used as an example of chaos in mechanical systems. The chaotic system is characterized by a sensitive system to the initial condition. It means that giving the initial condition with a small difference will give a different solution. Lyapunov Exponent is used to calculating the range of two trajectories with a small difference of initial condition, where the positive exponent value shows two different solutions close at the beginning then more diverge away. In this paper, we determine parameters that will cause the double pendulum system to reach chaos easily. To facilitate this, the equations of the double pendulum motion are simplified by {formula}. In particular, we focus on determining the mass ratio and length ratio from the double pendulum system. In some simulations with simulation program that have been made in Maple, the program has resulted in the greater value of δ at the specific problem shows that the system needs the value of θ_1,θ_2,θ_1,θ_2 as first initial condition smaller to reaches chaos easily.
机译:双摆率由两个摆锤组成,其具有位于第一摆在第一摆在第一摆的末端的枢轴,通过刚性杆,麻马并考虑重力的效果。双摆系统具有奇怪和不可预测的行为。双摆系统中的混乱通常用作机械系统中混沌的示例。混沌系统的特点是敏感系统到初始条件。这意味着给出少数差异的初始条件将提供不同的解决方案。 Lyapunov指数用于计算具有初始条件差异的少量轨迹的两个轨迹的范围,其中正指数值显示两个不同的解决方案在开始时关闭然后散发出来。在本文中,我们确定将使双摆系统轻松到达混沌的参数。为了便于实现,通过{公式}简化了双摆动运动的等式。特别是,我们专注于确定与双摆系统的质量比和长度比。在具有在枫叶中进行的仿真程序的一些模拟中,该程序导致了在特定问题上的Δ的值较大,表明系统需要θ_1,θ_2,θ_1,θ_2的值,因为第一初始条件较小到达到混沌容易地。

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