SledZig: Boosting Cross-Technology Coexistence for Low-Power Wireless Devices

Junmei Yao, H. Huang, Ruitao Xie, Xiaolong Zheng, Kaishun Wu
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引用次数: 1

Abstract

With the rapid growth of Internet of Things, the number of heterogeneous wireless devices working in the same frequency band increases dramatically, leading to severe cross-technology interference. To enable coexistence, researchers have proposed a large number of mechanisms to manage interference. However, existing mechanisms have severe modifications in either the physical or MAC (medium access control) layers, making them hard to be deployed on commercial devices. In this paper, we design and implement SledZig to boost cross-technology coexistence for low-power devices through both enabling more transmission opportunities and avoiding interference. SledZig is fully compatible with the standard in both physical and MAC layers. It decreases the WiFi signal power on the channel of low-power devices while keeps the WiFi transmission power unchanged, through making constellation points in the overlapped subcarriers have the lowest power, which can be achieved by just encoding the WiFi payload. We implement SledZig on hardware testbed and evaluate its performance under different settings. Experiment results show that SledZig can effectively increase ZigBee transmissions and improve its performance over a WiFi channel under various WiFi data traffic, with as low as 6.94% WiFi throughput loss.
SledZig:促进低功耗无线设备的跨技术共存
随着物联网的快速发展,工作在同一频段的异构无线设备数量急剧增加,导致了严重的跨技术干扰。为了实现共存,研究人员提出了大量的机制来管理干扰。然而,现有的机制在物理层或MAC(介质访问控制)层都有严重的修改,这使得它们很难在商业设备上部署。在本文中,我们设计并实现了SledZig,通过提供更多的传输机会和避免干扰来促进低功耗设备的跨技术共存。SledZig在物理层和MAC层与标准完全兼容。它通过使重叠子载波中的星座点具有最低的功率来降低低功耗设备信道上的WiFi信号功率,同时保持WiFi的发射功率不变,这可以通过对WiFi载荷进行编码来实现。我们在硬件测试平台上实现了SledZig,并对其在不同设置下的性能进行了评估。实验结果表明,SledZig可以在各种WiFi数据流量下有效地增加ZigBee的传输量,提高其在WiFi信道上的性能,WiFi吞吐量损失低至6.94%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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