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Schedule Adaptation for Ensuring Reliability in RT-WiFi-Based Networked Embedded Systems

机译:安排适应确保RT-Wifi的网络嵌入式系统的可靠性

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With the ever-growing interests in applying wireless technologies for networked embedded systems to serve as the communication fabric, many real-time wireless technologies have been recently developed to support time-critical sensing and control applications. We proposed in previous work the RT-WiFi protocol that provides real-time high-speed predictable data delivery and enables designs to meet time-critical industrial needs. However, without explicit reliability enforcement mechanisms, our previous RT-WiFi design is either subject to uncontrolled packet loss due to noise and other interferences or may suffer from inefficient communication channel usage. In this article, we explicitly consider interference from both Wi-Fi and non-Wi-Fi based interference sources and propose two sets of effective solutions for reliable data transmissions in RT-WiFi-based networked embedded systems. To improve reliability against general non-Wi-Fi based interference, based on rate adaptation and retransmission techniques, we present an optimal real-time rate adaption algorithm together with a communication link scheduler that has low network management overhead. A novel technique called overbooking is introduced to further improve the schedulability of the communication link scheduler while maintaining the required communication reliability. For Wi-Fi-based interference, we present mechanisms that utilize virtual carrier sensing to provide reliable data transmission while co-existing with regular Wi-Fi networks. We have implemented the proposed algorithms in the RT-WiFi network management frame-work and demonstrated the system performance with a series of experiments.
机译:在应用于网络嵌入式系统的无线技术方面,凭借不断增长的利益作为通信结构,最近已经开发了许多实时无线技术来支持时间关键传感和控制应用。我们在以前的工作中提出了RT-WiFi协议,提供了实时高速可预测数据传递,并使设计能够满足时间关键的工业需求。然而,如果没有明确的可靠性执法机制,我们以前的RT-WiFi设计是由于噪声和其他干扰而受到不受控制的分组损失,或者可能遭受低效的通信信道使用。在本文中,我们明确考虑从Wi-Fi和非Wi-Fi的干扰源的干扰,并提出了两组基于RT-Wifi的网络嵌入式系统中可靠的数据传输的有效解决方案。为了提高对一般非Wi-Fi的干扰的可靠性,基于速率适配和重传技术,我们与具有低网络管理开销的通信链路调度器一起提供最佳实时速率适应算法。引入了一种名为超额预订的新技术,以进一步提高通信链路调度器的调度性,同时保持所需的通信可靠性。对于基于Wi-Fi的干扰,我们提供了利用虚拟载波感测的机制,以提供可靠的数据传输,同时与常规Wi-Fi网络共存。我们已经在RT-WiFi网络管理帧工作中实施了所提出的算法,并通过一系列实验展示了系统性能。

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