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Layer-to-Layer Predictive Control of Inkjet 3-D Printing

机译:喷墨3-D打印的层到层预测控制

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This article develops and experimentally validates a distributed predictive control algorithm for closed-loop control of inkjet 3-D printing to handle constraints, e.g., droplet volume bounds, as well as the large-scale nature of the 3-D printing problem. The large number of decision variables, i.e., droplet volumes at each grid point, in high resolution inkjet 3-D printing makes centralized methods extremely time-consuming, thus, a distributed implementation of the controller is necessary. First, a graph-based height evolution model that captures the liquid spreading dynamics is described. Based on this model, a scalable closed-loop control algorithm using distributed model predictive control (MPC) that can reduce computation time significantly is designed and experimentally implemented. The performance and efficiency of the algorithm are shown to outperform open-loop printing and closed-loop printing with existing centralized MPC methods.
机译:本文开发和实验验证了用于闭环控制喷墨3-D打印的分布式预测控制算法,以处理约束,例如液滴体积界限,以及3-D打印问题的大规模性质。在高分辨率喷墨3-D印刷中,在每个网格点处的大量决策变量,即液滴卷,在高分辨率喷墨3-D打印中,使得能够极其耗时,因此,需要对控制器的分布式实现。首先,描述了一种基于图的高度演化模型,其捕获液体扩展动态。基于该模型,设计了一种可伸缩的闭环控制算法,其使用分布式模型预测控制(MPC),可以在实验和实验上实现显着降低计算时间。算法的性能和效率显示为具有现有集中式MPC方法的开环打印和闭环打印。

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