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李晟洁  等:基于 Wi-Fi 信道状态信息的行走识别与行走参数估计                                              3137


                [10]    Zeng Y, Pathak PH, Mohapatra P. WiWho: WiFi-based person identification in smart spaces. In: Proc. of the 15th Int’l Conf. on
                     Information Processing in Sensor Networks. Vienna: IEEE, 2016. 112. https://doi.org/10.1109/IPSN.2016.7460727
                [11]    Wu D, Zhang DQ, Xu CR, Wang YS, Wang H. WiDir: Walking direction estimation using wireless signals. In: Proc. of the 2016
                     ACM  Int’l Joint Conf.  on  Pervasive and Ubiquitous Computing. Heidelberg: ACM,  2016.  351362. https://doi.org/10.1145/
                     2971648.2971658
                [12]    Xu Y, Yang W, Wang JX, Zhou X, Li H, H LS. WiStep: Device-free step counting with WiFi signals. In: Proc of the ACM on
                     Interactive, Mobile, Wearable and Ubiquitous Technologies. New York: ACM, 2018. 123. https://doi.org/10.1145/3178157
                [13]    Hsu CY, Liu YC, Kabelac Z, Hristov R, Katabi D, Liu C. Extracting gait velocity and stride length from surrounding radio signals.
                     In: Proc.of the 2017  CHI  Conf. on  Human Factors  in  Computing Systems. Denver:  ACM,  2017. 21162126. https://doi.org/10.
                     1145/3025453.3025937
                [14]    Li SJ, Li X, Niu K, Wang H, Zhang Y, Zhang DQ. AR-alarm: An adaptive and robust intrusion detection system leveraging CSI
                     from commodity Wi-Fi. In: Proc. of the 2017 Int’l Conf. on Smart Homes and Health Telematics. Cham: Springer-Verlag, 2017.
                     211223. https://doi.org/10.1007/978-3-319-66188-9_18
                [15]    Xiao J, Wu KS, Yi YW, Wang L, Ni LM. FIMD: Fine-grained device-free motion detection. In: Proc. of the 18th Int’l Conf. on
                     Parallel and Distributed Systems. Singapore: IEEE, 2012. 229235. https://doi.org/10.1109/ICPADS.2012.40
                [16]    Qian K, Wu CS, Yang Z, Liu YH, Zhou ZM. PADS: Passive detection of moving targets with dynamic speed using PHY layer
                     information. In: Proc. of the 18th Int’l  Conf. on Parallel  and  Distributed Systems. IEEE, 2014. 18. https://doi.org/10.1109/
                     PADSW.2014.7097784
                [17]    Wu CS, Yang Z, Zhou ZM, Liu XF, Liu YH, Cao JN. Non-invasive detection of moving and stationary human with Wi-Fi. IEEE
                     Journal on Selected Areas in Communications, 2015,33(11):23292342. https://doi.org/10.1109/JSAC.2015.2430294
                [18]    Wang J, Jiang HB, Xiong J, Jamieson K, Chen XJ, Fang DY, Xie BB. LiFS: Low human-effort, device-free localization with fine-
                     grained subcarrier information. In: Proc. of the 22nd Annual Int’l Conf. on Mobile Computing and Networking. New York: ACM,
                     2016. 243256. https://doi.org/10.1145/2973750.2973776
                [19]    Li X, Li SJ, Zhang DQ, Xiong J, Wang YS, Mei H. Dynamic-MUSIC: Accurate device-free indoor localization. In: Proc. of the
                     2016 ACM Int’l Joint Conf. on Pervasive and Ubiquitous Computing. New York: ACM, 2016. 196207. https://doi.org/10.1145/
                     2971648.2971665
                [20]    Li X, Zhang DQ, Lv Q, Xiong J, Li SJ, Zhang Y, Mei H. IndoTrack: Device-free indoor human tracking with commodity Wi-Fi. In:
                     Proc. of the ACM on Interactive, Mobile, Wearable and Ubiquitous Technologies. New York: ACM, 2017. 122. https://doi.org/10.
                     1145/3130940
                [21]    Qian K, Wu CS, Yang Z, Liu YH, Jamieson K. WiDar: Decimeter-level passive tracking via velocity monitoring with commodity
                     Wi-Fi. In: Proc. of the 18th ACM Int’l Symp. on Mobile Ad Hoc Networking and Computing. Chennai, 2017. 110. https://doi.org/
                     10.1145/3084041.3084067
                [22]    Qian K, Wu CS, Zhang Y, Zhang Y, Zhang GD, Yang Z, Liu YH. Widar2.0: Passive human tracking with a single Wi-Fi link. In:
                     Proc. of 16th ACM Int’l Conf. on Mobile Systems, Applications, and Services. Munich: ACM, 2018. 350361. https://doi.org/10.
                     1145/3210240.3210314
                [23]    Ali K, Liu AX, Wang W, Shahzad M. Keystroke recognition using Wi-Fi signals. In: Proc. of the 21st Annual Int’l Conf. on Mobile
                     Computing and Networking. Paris: ACM, 2015. 90102. https://doi.org/10.1145/2789168.2790109
                [24]    Li H, Yang W, Wang JX, Xu Y, Huang LS. WiFinger: Talk to your smart devices with finger-grained gesture. In: Proc. of the 2016
                     ACM  Int’l Joint Conf.  on  Pervasive and Ubiquitous Computing. Heidelberg: ACM,  2016.  250261. https://doi.org/10.1145/
                     2971648
                [25]    Wang GH, Zou YP, Zhou ZM, Wu KS, Ni LM. We can hear you with Wi-Fi! IEEE Trans. on Mobile Computing, 2016,15(11):
                     29072920. https://doi.org/10.1145/2639108.2639112
                [26]    Zhang DQ, Wang H, Wu D. Toward centimeter-scale human activity sensing with Wi-Fi signals. IEEE Computer Magazine, 2017,
                     50(1):4857. https://doi.org/10.1109/MC.2017.7
                [27]    Wang H, Zhang DQ, Ma JY, Wang  YS, Wang YX,  Wu D,  Gu  T,  Xie  B.  Human respiration detection  with  commodity  Wi-Fi
                     devices: Do user location and body orientation matter? In: Proc. of the 2016 ACM Int’l Joint Conf. on Pervasive and Ubiquitous
                     Computing. Heidelberg: ACM, 2016. 2536. https://doi.org/10.1145/2971648
                [28]    Zhang FS,  Zhang  DQ,  Xiong J,  Wang H,  Niu K, Jin  BH, Wang  YX.  From Fresnel diffraction  model to fine-grained human
                     respiration sensing with  commodity  Wi-Fi devices. In: Proc. of the  ACM on Interactive, Mobile,  Wearable  and  Ubiquitous
                     Technologies. Singapore: ACM, 2018. 123. https://doi.org/0000001.0000001
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