控制系统中网络延迟的影响:在直流电机控制中的应用

S. Kolla, J. Mainoo
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引用次数: 0

摘要

在网络控制系统(NCS)中,传感器、控制器和执行器作为节点连接到通信网络,而不是用点对点连接将它们硬连接起来。这些网络也被称为现场总线网络。由于所使用的总线仲裁方案,在连接到共享网络介质的设备之间交换数据时,通信网络可能引入时间延迟。这些延迟会降低系统性能。传统的控制器在设计中不考虑时间延迟,在应用于网络控制系统时可能无法充分发挥作用。本文研究了这些时滞对闭环控制系统稳定性、峰值超调量和稳定时间等性能指标的影响。本文利用MATLAB/Simulink软件对直流电机模型进行仿真,证明了这些影响对比例、积分和导数(PID)控制器控制系统的影响。最近的一篇论文使用了传统的线性二次型调节器(LQR)的延迟状态设计,并举例说明了无线网络控制系统的性能下降。本文建议使用LQR设计,考虑到NCS可能不会降低性能的延迟,并举例说明了直流电机控制系统的改进结果。本文还研究了这些控制器的鲁棒稳定性。
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Effect of network-induced delays in control systems: Application to dc motor control
In a Networked Control System (NCS), sensors, controllers and actuators are connected to the communication network as nodes instead of hardwiring them with point-to-point connections. These networks are also called Fieldbus Networks. The communication network may introduce time delays while exchanging data among devices connected to the shared network medium due to bus arbitration schemes used. These delays can degrade the system performance. The traditional controllers that do not consider the time delays in the design may not perform adequately when applied in NCS. In this paper the impact of these delays on closed loop control system performance measures such as stability, peak overshoot, and settling time are investigated. The paper demonstrates these effects on a control system with a Proportional, Integral, and Derivative (PID) controller using simulation of a DC motor model with MATLAB/Simulink software. A recent paper used the traditional Linear Quadratic Regulator (LQR) design with a delayed state and illustrated the degraded performance for a system with control over wireless networks. This paper suggests the use of a LQR design that takes delays into account for NCS which may not degrade the performance, and illustrates the improved results for a DC motor control system. The paper also studies the robust stability properties of these controllers.
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