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Internet-based supervisory control and stability analysis for time delay

机译:基于Internet的时延监督控制和稳定性分析

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The main objective of this research is to demonstrate experimentally the feasibility of using the Internet for distributed real-time control. A magnetic ball levitation system was developed as a test bed for the experimental verification of the real-time supervisory control scheme via the Internet. This supervisory control is based on the client/server architecture. With CGI (common gateway interface) and HTML (hypertext markup language) codes, it has been shown that a client can change the position commands, modify the control parameters, and receive the experimental results in real time. We propose a methodology of using timeout and sensor data estimation along with the controller to stabilize the system with bounded sporadic time delay in the Internet. The algorithm increased the mean allowable time delay following a uniform distribution from 90 /spl mu/s to 836 /spl mu/s. This algorithm also ensures the system stability at a sampling frequency of 333.3 Hz in the presence of bounded sporadic surges in time delays.
机译:这项研究的主要目的是通过实验证明使用Internet进行分布式实时控制的可行性。开发了磁悬浮球系统作为测试平台,用于通过Internet对实时监控方案进行实验验证。此监视控制基于客户端/服务器体系结构。通过CGI(通用网关接口)和HTML(超文本标记语言)代码,已显示出客户端可以更改位置命令,修改控制参数并实时接收实验结果。我们提出了一种使用超时和传感器数据估计以及控制器来稳定Internet中有限的零星时间延迟的系统的方法。该算法将均匀分布后的平均允许时间延迟从90 / spl mu / s增加到836 / spl mu / s。该算法还可以确保在333.3 Hz的采样频率下,在存在有限的零星电涌时延时延时,系统具有稳定性。

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