论文标题

高效FIFI:通过CSI压缩进行大规模轻质WiFi传感

EfficientFi: Towards Large-Scale Lightweight WiFi Sensing via CSI Compression

论文作者

Yang, Jianfei, Chen, Xinyan, Zou, Han, Wang, Dazhuo, Xu, Qianwen, Xie, Lihua

论文摘要

由于高速互联网访问的要求增加,WiFi技术已应用于各个地方。最近,除了网络服务之外,WiFi Sensing在智能家居中具有吸引力,因为它是无设备,具有成本效益和隐私性的。尽管已经开发了许多WiFi传感方法,但其中大多数仅考虑单个智能家庭场景。没有强大的云服务器和大量用户的连接,大规模的WiFi感应仍然很困难。在本文中,我们首先分析和总结了这些障碍,并提出了有效的大规模WiFi传感框架,即有效的障碍。 EfficityFi可与中心服务器的WiFi APS和云计算一起使用Edge Computing。它由一个新颖的深神经网络组成,该网络可以在Edge上压缩细粒的WiFi通道状态信息(CSI),在云中恢复CSI,并同时执行感应任务。量化的自动编码器和联合分类器旨在以端到端的方式实现这些目标。据我们所知,EfficityFi是第一个启用IoT-Cloud WiFi传感框架,可大大减少开销的交流,同时准确地实现感应任务。我们通过WiFi传感利用人类的活动识别和鉴定为两个案例研究,并进行了广泛的实验以评估有效性。结果表明,它将CSI数据从1.368MB/s压缩至0.768kb/s,数据重建的误差极低,并且可以达到超过98%的人类活动识别精度。

WiFi technology has been applied to various places due to the increasing requirement of high-speed Internet access. Recently, besides network services, WiFi sensing is appealing in smart homes since it is device-free, cost-effective and privacy-preserving. Though numerous WiFi sensing methods have been developed, most of them only consider single smart home scenario. Without the connection of powerful cloud server and massive users, large-scale WiFi sensing is still difficult. In this paper, we firstly analyze and summarize these obstacles, and propose an efficient large-scale WiFi sensing framework, namely EfficientFi. The EfficientFi works with edge computing at WiFi APs and cloud computing at center servers. It consists of a novel deep neural network that can compress fine-grained WiFi Channel State Information (CSI) at edge, restore CSI at cloud, and perform sensing tasks simultaneously. A quantized auto-encoder and a joint classifier are designed to achieve these goals in an end-to-end fashion. To the best of our knowledge, the EfficientFi is the first IoT-cloud-enabled WiFi sensing framework that significantly reduces communication overhead while realizing sensing tasks accurately. We utilized human activity recognition and identification via WiFi sensing as two case studies, and conduct extensive experiments to evaluate the EfficientFi. The results show that it compresses CSI data from 1.368Mb/s to 0.768Kb/s with extremely low error of data reconstruction and achieves over 98% accuracy for human activity recognition.

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