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Predictive compensation for variable network delays and packet losses in networked control systems

机译:网络控制系统中可变网络延迟和数据包丢失的预测补偿

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Networked control systems (NCSs) offer many advantages over conventional control; however, they also demonstrate challenging problems such as network-induced delay and packet losses. This paper proposes an approach of predictive compensation for simultaneous network-induced delays and packet losses. Different from the majority of existing NCS control methods, the proposed approach addresses co-design of both network and controller. It also alleviates the requirements of precise process models and full understanding of NCS network dynamics. For a series of possible sensor-to-actuator delays, the controller computes a series of corresponding redundant control values. Then, it sends out those control values in a single packet to the actuator. Once receiving the control packet, the actuator measures the actual sensor-to-actuator delay and computes the control signals from the control packet. When packet dropout occurs, the actuator utilizes past control packets to generate an appropriate control signal. The effectiveness of the approach is demonstrated through examples.
机译:与传统控制相比,网络控制系统(NCS)具有许多优势。但是,它们也显示出具有挑战性的问题,例如网络引起的延迟和数据包丢失。本文提出了一种预测补偿的方法,用于同时引起的网络延迟和数据包丢失。与大多数现有的NCS控制方法不同,该方法可解决网络和控制器的共同设计问题。它还减轻了对精确过程模型的需求,并减轻了对NCS网络动力学的充分了解。对于一系列可能的传感器到执行器延迟,控制器将计算一系列相应的冗余控制值。然后,将这些控制值以单个数据包的形式发送给执行器。一旦接收到控制包,执行器便会测量实际的传感器到执行器的延迟,并从控制包中计算出控制信号。当发生数据包丢失时,执行器会利用过去的控制数据包生成适当的控制信号。通过示例证明了该方法的有效性。

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