交叉:对抗低功耗无线网络中的交叉技术干扰

Anwar Hithnawi, Su Li, Hossein Shafagh, J. Gross, S. Duquennoy
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引用次数: 40

摘要

众所周知,低功耗无线设备容易受到跨技术干扰(CTI)的影响。为了实现共存,研究人员提出了各种干扰缓解策略。然而,现有的解决方案都是在现有无线电芯片的限制下设计的。在本文中,我们研究了如何利用802.15.4信号的物理层特性来更好地处理CTI。我们提出了一种利用物理层信息和处理来改善CTI下低功耗通信的跨层解决方案CrossZig。为此,CrossZig利用物理层信息来检测损坏数据包中CTI的存在,并应用自适应数据包恢复,该恢复结合了一种新颖的基于跨层的数据包合并和自适应FEC编码。我们在一个软件定义的无线电平台上实现了一个低功耗IEEE 802.15.4的crosszigg原型。我们通过实验评估证明了CrossZig的适应性和性能增益,同时考虑了微基准测试和系统在各种干扰模式下的性能。结果表明,CrossZig在误差定位(准确率为94.3%)和干扰类型识别(在信噪比小于3 dB的范围内错误率小于5%)方面具有较高的精度。此外,我们的系统在各种干扰技术的干扰下表现出一致的性能改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CrossZig: Combating Cross-Technology Interference in Low-Power Wireless Networks
Low-power wireless devices suffer notoriously from Cross- Technology Interference (CTI). To enable co-existence, researchers have proposed a variety of interference mitigation strategies. Existing solutions, however, are designed to work with the limitations of currently available radio chips. In this paper, we investigate how to exploit physical layer properties of 802.15.4 signals to better address CTI. We present CrossZig, a cross-layer solution that takes advantage of physical layer information and processing to improve low-power communication under CTI. To this end, CrossZig utilizes physical layer information to detect presence of CTI in a corrupted packet and to apply an adaptive packet recovery which incorporates a novel cross-layer based packet merging and an adaptive FEC coding. We implement a prototype of CrossZig for the low-power IEEE 802.15.4 in a software-defined radio platform. We show the adaptability and the performance gain of CrossZig through experimental evaluation considering both micro-benchmarking and system performance under various interference patterns. Our results demonstrate that CrossZig can achieve a high accuracy in error localization (94.3% accuracy) and interference type identification (less than 5% error rate for SINR ranges below 3 dB). Moreover, our system shows consistent performance improvements under interference from various interfering technologies.
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