论文标题
控制应用程序的网络功能压缩
Network Functional Compression for Control Applications
论文作者
论文摘要
未来的通信系统的趋势是旨在转向和控制网络物理系统。这些系统可能会在工业4.0中呈现的环境中迅速变得拥挤。在这些情况下,大量传感器数据将无线传输到计算网络物理系统控制功能的网络控制器中的多个。在本文中,我们将网络功能压缩(FC)的实现作为概念证明,以大大减少这些情况下的数据流量。 FC是一种面向目标的通信方案的一种形式,在该方案中,发件人接收器对的目的是传输最小信息量以计算接收器端的功能。在我们的情况下,发件人将传感器数据的编码和压缩版本传输到目标,这是一个对计算作为其目标函数(PID控制器)感兴趣的网络内部控制器。我们表明,在某些情况下,通过使用FC可以实现超过50%的压缩率。我们还表明,以分布式级联时尚的方式使用FC可以实现更明显的压缩率,同时降低计算成本。
The trend of future communication systems is to aim for the steering and control of cyber physical systems. These systems can quickly become congested in environments like those presented in Industry 4.0. In these scenarios, a plethora of sensor data is transmitted wirelessly to multiple in network controllers that compute the control functions of the cyber physical systems. In this paper, we show an implementation of network Functional Compression (FC) as a proof of concept to drastically reduce the data traffic in these scenarios. FC is a form of goal-oriented communication scheme in which the objective of the sender receiver pair is to transmit the minimum amount of information to compute a function at the receiver end. In our scenario, the senders transmit an encoded and compressed version of the sensor data to a destination, an in-network controller interested in computing as its target function, a PID controller. We show that it is possible to achieve compression rates of over 50% in some cases by employing FC. We also show that using FC in a distributed cascade fashion can achieve more significant compression rates while reducing computational costs.