Event-triggered control (ETC) holds the potential to significantly improve the efficiency of wireless networked control systems. Unfortunately, its real-world impact has hitherto been hampered by the lack of a network stack able to transfer its benefits from theory to practice specifically by supporting the latency and reliability requirements of the aperiodic communication ETC induces. This is precisely the contribution of this paper. Our Wireless Control Bus (WCB) exploits carefully orchestrated network-wide floods of concurrent transmissions to minimize overhead during quiescent, steady-state periods, and ensures timely and reliable collection of sensor readings and dissemination of actuation commands when an ETC triggering condition is violated. Using a cyber-physical testbed emulating a water distribution system controlled over a real-world multi-hop wireless network, we show that ETC over WCB achieves the same quality of periodic control at a fraction of the energy costs, therefore unleashing and concretely demonstrating its full potential for the first time.
翻译:事件触发控制(ETC)具有大幅提高无线网络控制系统效率的潜力,但不幸的是,其真实世界影响迄今一直受到阻碍,因为缺乏一个网络堆,无法通过支持定期通信电讯控制诱发的潜伏性和可靠性要求,具体地通过支持定期通信电讯控制系统的潜伏性和可靠性要求,从理论到实践的惠益。这正是本文的贡献。我们的无线控制巴士(WCB)利用精心策划的全网络范围同时传输的洪水,在电讯稳定状态期间尽量减少高压,并确保在电讯触发条件被违反时及时可靠地收集感应读数和传播启动指令。我们利用一个网络物理试验台模拟一个受真实世界多光速无线网络控制的水分配系统,我们表明对WCB的电讯传输控制在能源成本的一小部分上实现了同样的定期控制质量,因此首次释放并具体展示了其全部潜力。