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CARE: Corruption-Aware Retransmission with Adaptive Coding for the Low-Power Wireless

机译:CARE:低功耗无线自适应编码的腐败感知重传

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Wireless communications are inherently unreliable, especially for low-power wireless networks like 802.15.4. Packet corruptions typically occur because of interference, fading or noise. In this paper, we investigate the problem of corruption aware retransmission with adaptive coding in commercial-off-the-shelf (COTS) low-power devices. We propose an accurate corruption detection algorithm for identifying the number of corrupted bytes in a packet based on the RSSI time series during packet reception. Based on the corruption level, we design an adaptive coding scheme based on Reed Solomon (RS) codes. We carefully select the coding parameters so as to optimize the network performance. Finally, we design and implement CARE, a Corruption-Aware REtransmission protocol by incorporating corruption detection and adaptive coding. We conduct extensive experiments based on COTS low-power devices. Results show that CARE significantly improves the performance for weak and highly interfered links while incurring no additional overhead for good links.
机译:无线通信本质上是不可靠的,尤其是对于像802.15.4这样的低功率无线网络而言。数据包损坏通常是由于干扰,衰落或噪声引起的。在本文中,我们研究了在商用现货(COTS)低功耗设备中使用自适应编码进行腐败感知重传的问题。我们提出了一种精确的损坏检测算法,用于在数据包接收期间基于RSSI时间序列来识别数据包中损坏的字节数。基于损坏程度,我们设计了一种基于里德·所罗门(RS)码的自适应编码方案。我们仔细选择编码参数,以优化网络性能。最后,我们结合了腐败检测和自适应编码,设计并实现了CARE,一种可感知腐败的重传协议。我们基于COTS低功耗设备进行了广泛的实验。结果表明,CARE显着提高了弱链接和受到严重干扰的链接的性能,同时又不增加良好链接的额外开销。

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