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首页> 外文期刊>IEEE transactions on mobile computing >Embracing Corruption Burstiness: Fast Error Recovery for ZigBee under Wi-Fi Interference
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Embracing Corruption Burstiness: Fast Error Recovery for ZigBee under Wi-Fi Interference

机译:拥抱腐败:在Wi-Fi干扰下ZigBee的快速错误恢复

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The ZigBee communication can be easily and severely interfered by Wi-Fi traffic. Error recovery, as an important means for ZigBee to survive Wi-Fi interference, has been extensively studied in recent years. The existing works add upfront redundancy to in-packet blocks for recovering a certain number of random corruptions. Therefore, the bursty nature of ZigBee in-packet corruptions under Wi-Fi interference is often considered harmful, since some blocks are full of errors which cannot be recovered and some blocks have no errors but are still requiring redundancy. As a result, they often use interleaving to reshape the bursty errors, before applying complex FEC codes to recover the re-shaped random distributed errors. In this paper, we take a different view that burstiness may be helpful. With burstiness, the in-packet corruptions are often consecutive and the requirement for error recovery is reduced as “recovering any k consecutive errors” instead of “recovering any random k errors”. This lowered requirement allows us to design far more efficient code than the existing FEC codes. Motivated by this implication, we exploit the corruption burstiness to design a simple yet effective error recovery code using XOR operations (called ZiXOR). ZiXOR uses XOR code and the delay is significantly reduced. More, ZiXOR uses RSSI-hinted approach to detect in packet corruptions without CRC, incurring almost no extra transmission overhead. The testbed evaluation results show that ZiXOR outperforms the state-of-the-art works in terms of the throughput (by 47 percent) and latency (by 22 percent).
机译:Wi-Fi流量很容易严重干扰ZigBee通信。近年来,错误恢复作为ZigBee抵御Wi-Fi干扰的重要手段,已经得到了广泛的研究。现有工作为分组内块添加了前期冗余,以恢复一定数量的随机损坏。因此,在Wi-Fi干扰下ZigBee数据包内破坏的突发性通常被认为是有害的,因为某些块充满了无法恢复的错误,而某些块没有错误但仍需要冗余。结果,在应用复杂的FEC码恢复经过整形的随机分布错误之前,他们经常使用交织来对突发错误进行整形。在本文中,我们采取另一种观点认为突发性可能会有所帮助。由于具有突发性,所以数据包内损坏通常是连续的,并且将错误恢复的要求降低为“恢复任何k个连续错误”,而不是“恢复任何随机k个错误”。降低的要求使我们可以设计比现有的FEC代码更有效的代码。出于这种暗示的动机,我们利用破坏突发性来设计使用XOR操作(称为ZiXOR)的简单而有效的错误恢复代码。 ZiXOR使用XOR代码,并且延迟大大减少。此外,ZiXOR使用RSSI提示的方法来检测没有CRC的数据包损坏,几乎不会产生额外的传输开销。测试平台评估结果表明,ZiXOR在吞吐量(降低47%)和延迟(降低22%)方面优于最新技术。

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