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A Multirate Control Strategy to the Slow Sensors Problem: An Interactive Simulation Tool for Controller Assisted Design

机译:慢速传感器问题的多速率控制策略:控制器辅助设计的交互式仿真工具

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摘要

In many control applications, the sensor technology used for the measurement of the variable to be controlled is not able to maintain a restricted sampling period. In this context, the assumption of regular and uniform sampling pattern is questionable. Moreover, if the control action updating can be faster than the output measurement frequency in order to fulfill the proposed closed loop behavior, the solution is usually a multirate controller. There are some known aspects to be careful of when a multirate system (MR) is going to be designed. The proper multiplicity between input-output sampling periods, the proper controller structure, the existence of ripples and others issues need to be considered. A useful way to save time and achieve good results is to have an assisted computer design tool. An interactive simulation tool to deal with MR seems to be the right solution. In this paper this kind of simulation application is presented. It allows an easy understanding of the performance degrading or improvement when changing the multirate sampling pattern parameters. The tool was developed using Sysquake, a Matlab-like language with fast execution and powerful graphic facilities. It can be delivered as an executable. In the paper a detailed explanation of MR treatment is also included and the design of four different MR controllers with flexible structure to be adapted to different schemes will also be presented. The Smith's predictor in these MR schemes is also explained, justified and used when time delays appear. Finally some interesting observations achieved using this interactive tool are included.
机译:在许多控制应用中,用于测量待控制变量的传感器技术无法维持受限的采样周期。在这种情况下,规则和统一采样模式的假设值得怀疑。此外,如果控制动作更新可以快于输出测量频率以实现建议的闭环行为,则解决方案通常是多速率控制器。在设计多速率系统(MR)时,需要注意一些已知方面。需要考虑输入输出采样周期之间的适当多重性,适当的控制器结构,波动的存在以及其他问题。节省时间并获得良好结果的有用方法是拥有辅助的计算机设计工具。解决MR的交互式仿真工具似乎是正确的解决方案。本文提出了这种仿真应用。当更改多速率采样模式参数时,可以轻松了解性能下降或改进。该工具是使用Sysquake开发的,Sysquake是一种类似于Matlab的语言,具有快速执行和强大的图形功能。它可以作为可执行文件交付。在本文中,还包括对MR处理的详细说明,还将介绍四种具有灵活结构以适应不同方案的不同MR控制器的设计。这些MR方案中的史密斯预测变量也会在出现时延时进行解释,证明和使用。最后,包括使用此交互式工具获得的一些有趣的观察结果。

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