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Simultaneous Bi-Directional Communications and Data Forwarding Using a Single ZigBee Data Stream

机译:使用单个ZigBee数据流同时双向通信和数据转发

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摘要

With the exponentially increasing number of Internet of Things (IoT) devices and the huge volume of data generated by these devices, there is a pressing need to investigate a more efficient communication method in both frequency and time domains at the edge of IoT networks. In this paper, we present Amphista, a novel cross-layer design for IoT communication and data forwarding that can more efficiently utilize the ever increasingly crowded 2.4 GHz spectrum near the gateway. Specifically, to enable the communication from ZigBee to WiFi, we leverage WiFi's fine-grained channel state information to extract the concurrently transmitted ZigBee-to-WiFi message from time overlapped ZigBee and WiFi packet. We further leverage this unique feature and design a novel forwarding protocol that can simultaneously forward uplink (e.g., collecting sensing data) and downlink (e.g., disseminating control messages) data by using a single ZigBee data stream. Our extensive experimental results show that Amphista significantly improves throughput (by up to 400x) and reduces the latency.
机译:通过指数越来越多的东西互联网(IOT)设备和由这些设备产生的大量数据,因此需要压制需要在物联网边缘处的频率和时间域中研究更有效的通信方法。在本文中,我们展示了Amphista,一种用于物联网通信和数据转发的新型跨层设计,可以更有效地利用网关附近越来越拥挤的2.4 GHz光谱。具体而言,为了使从ZigBee传播到WiFi,我们利用WiFi的细粒度信道状态信息来从重叠的ZigBee和WiFi分组中提取并发地传输的ZigBee-to-WiFi消息。我们进一步利用了这种独特的特征,并设计了一种新的转发协议,其可以通过使用单个ZigBee数据流同时转发上行链路(例如,收集传感数据)和下行链路(例如,传播控制消息)数据。我们广泛的实验结果表明,倒置量显着提高了吞吐量(高达400倍)并降低了延迟。

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