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Towards embedded model predictive control for System-on-a-Chip applications

机译:迈向片上系统应用的嵌入式模型预测控制

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We propose a framework for embedding model predictive control for Systems-on-a-Chip applications. In order to allow the implementation of such a computationally expensive controller on chip, we propose reducing the precision of the microprocessor to the minimum while maintaining near optimal control performance. Taking advantage of the low precision, a logarithmic number system based microprocessor architecture is used, that allows the design of a reduced size processor, providing further energy and computational cost savings. The design parameters for this high-performance embedded controller are chosen using a combination of finite element method simulations and bit-accurate hardware emulations in a number of parametric tests. We provide the methodology for choosing the design parameters for two particular control problems; the temperature regulation in a wafer cross-section geometry, and the control of temperature in a non-isothermal fluid flow problem in a microdevice. Finally, we provide the microprocessor architecture details and estimates for the performance of the resulting embedded model predictive controller. (c) 2005 Elsevier Ltd. All rights reserved.
机译:我们提出了一个用于在片上系统应用中嵌入模型预测控制的框架。为了允许在芯片上实现这种计算上昂贵的控制器,我们建议将微处理器的精度降至最低,同时保持接近最佳的控制性能。利用低精度优势,使用了基于对数系统的微处理器架构,该架构允许设计尺寸减小的处理器,从而进一步节省了能源和计算成本。结合多种参数测试中的有限元方法仿真和位精确硬件仿真,可以选择此高性能嵌入式控制器的设计参数。我们提供了针对两个特定控制问题选择设计参数的方法。晶片横截面几何形状中的温度调节,以及微设备中非等温流体流动问题中的温度控制。最后,我们为最终嵌入式模型预测控制器的性能提供了微处理器体系结构的详细信息和估计。 (c)2005 Elsevier Ltd.保留所有权利。

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