论文标题
无线反馈控制具有可变数据包长度的工业物联网
Wireless Feedback Control with Variable Packet Length for Industrial IoT
论文作者
论文摘要
本文考虑了无线网络控制系统(WNCS),其中控制器通过无线通道将携带控制信息的数据包发送给执行器,以控制工业控制应用程序的物理过程。在WNCSS上的大多数现有工作中,用于传输的数据包长度是固定的。但是,从频道编码理论中,如果将消息编码为更长的代码字,则其可靠性会以较长的延迟为代价提高。延迟和可靠性都会对控制性能产生很大影响。 WNCSS很少考虑这种基本的延迟可利用权衡。在本文中,我们提出了一种新颖的WNC,其中控制器根据物理过程的当前状态适应控制数据包长度。我们提出决策问题,并找到最佳的可变长度数据包传输策略,以最大程度地减少WNCSS的长期平均成本。我们在具有不同数据包长度和控制系统参数的传输可靠性方面得出了对最佳策略存在的必要条件。
The paper considers a wireless networked control system (WNCS), where a controller sends packets carrying control information to an actuator through a wireless channel to control a physical process for industrial-control applications. In most of the existing work on WNCSs, the packet length for transmission is fixed. However, from the channel-encoding theory, if a message is encoded into a longer codeword, its reliability is improved at the expense of longer delay. Both delay and reliability have great impact on the control performance. Such a fundamental delay-reliability tradeoff has rarely been considered in WNCSs. In this paper, we propose a novel WNCS, where the controller adaptively changes the packet length for control based on the current status of the physical process. We formulate a decision-making problem and find the optimal variable-length packet-transmission policy for minimizing the long-term average cost of the WNCSs. We derive a necessary and sufficient condition on the existence of the optimal policy in terms of the transmission reliabilities with different packet lengths and the control system parameter.