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Integrated control strategy for autonomous decentralized conveyance systems based on distributed MEMS arrays

机译:基于分布式MEMS阵列的自主分散输送系统的综合控制策略

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In this paper, the authors proposed to study a model and a control strategy of a two-dimensional conveyance system based on the principles of the Autonomous Decentralized Microsystems (ADM). The microconveyance system is based on distributed cooperative MEMS actuators which can produce a force field onto the surface of the device to grip and move a micro-object. The modeling approach proposed here is based on a simple model of a microconveyance system which is represented by a 5 x 5 matrix of cells. Each cell is consisted of a microactuator, a microsensor, and a microprocessor to provide actuation, autonomy and decentralized intelligence to the cell. Thus, each cell is able to. identify a micro-object crossing on it and to decide by oneself the appropriate control strategy to convey the micro-object to its destination target. The control strategy could be established through five simple decision rules that the cell itself has to respect at each calculate cycle time. Simulation and FPGA implementation results are given in the end of the paper in order to validate model and control approach of the microconveyance system.
机译:本文提出了基于自主分散微系统(ADM)的原理研究了二维输送系统的模型和控制策略。微控制系统基于分布式协作MEMS致动器,其可以在装置的表面上产生力场以抓握和移动微对象。这里提出的建模方法是基于微控制系统的简单模型,其由电池的5×5矩阵表示。每个电池由微致动器,微电管和微处理器组成,以向细胞提供致动,自主权和分散的智能。因此,每个细胞都能够。识别它上的微量对象交叉并通过自己来决定适当的控制策略,以将微对象传达到其目的地目标。可以通过五个简单的决策规则建立控制策略,即细胞本身必须在每个计算循环时间内尊重。仿真和FPGA实现结果在纸张的末尾给出,以验证微控制系统的模型和控制方法。

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