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首页> 外文期刊>Mathematics and mechanics of solids: MMS >Brachistochronic motion of a nonholonomic variable-mass mechanical system in general force fields
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Brachistochronic motion of a nonholonomic variable-mass mechanical system in general force fields

机译:一般力场中非完整的可变质量机械系统的支架轴承料运动

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In this paper, the brachistochronic motion of a mechanical system composed of variable-mass particles is analysed. Workless (ideal) holonomic and linear nonholonomic constraints are imposed on the system. It is assumed that the system moves in an arbitrary field of known potential and nonpotential forces with prescribed both laws of the time-rate of mass variation of the particles and relative velocities of the expelled (or gained) masses. The first time-derivatives of quasi-velocities are taken as control variables. Using Pontryagin's maximum principle and singular optimal control theory, the problem of brachistochronic motion of the nonholonomic variable-mass mechanical system is solved as a two-point boundary value problem. In addition, a discussion about the realization of control forces is given. The results are illustrated via an example.
机译:本文分析了由可变质量粒子组成的机械系统的支撑轴承尖运动。 无效(理想)实体性和线性的非完整约束在系统上施加。 假设系统在已知电位和非屏障力的任意场中移动,并且规定了颗粒的质量变化的时间率和被排出的(或获得的)质量的相对速度的两种定律。 准速度的第一次衍生物被视为控制变量。 利用髓晶素的最大原理和奇异最佳控制理论,非完整的可变质量机械系统的支架轴承电弓形运动的问题被解开了两点边值问题。 此外,给出了关于控制力的实现的讨论。 结果通过示例说明。

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