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Nonlinear dynamics in distributed arrival time control of heterarchical manufacturing systems

机译:分层制造系统分布式到达时间控制中的非线性动力学

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Heterarchical control architectures with fully distributed control have been developed in order to improve responsiveness and effectiveness of manufacturing shop-floor control systems. The dynamics of these highly distributed systems have been difficult to predict particularly when control is based on heuristics. In this paper a dynamical model is developed for a single machine processing an arbitrary number of parts. The structure of the system, which requires queuing of parts when they arrive at a machine, leads to nonlinearities such as dead-zone and discontinuities. A continuous arrival time controller of the integrating type is used that results in a system that can be modeled using nonlinear differential equations that can be solved using a method due to Filippov (1960, 1988). This enables prediction of trajectories of part arrival times and derivation of closed form expressions for steady-state values. The analytical model for the dynamics is validated and the dynamic response of the system is illustrated using numerical simulation.
机译:为了提高生产车间控制系统的响应速度和有效性,已经开发了具有完全分布式控制的分层控制体系结构。这些高度分散的系统的动力学很难预测,特别是在基于启发式控制的情况下。在本文中,为单机处理任意数量的零件开发了一个动力学模型。系统的结构需要零件在到达机器时排队,因此会导致非线性,例如死区和不连续性。使用积分类型的连续到达时间控制器,该控制器可生成一个系统,该系统可以使用非线性微分方程建模,该方程可以使用Filippov(1960,1988)的方法求解。这使得能够预测零件到达时间的轨迹并推导稳态值的闭式表达式。验证了动力学分析模型,并使用数值模拟说明了系统的动态响应。

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