[1] |
Rappaport T S. Wireless communications:principles and practice[M]. Upper Saddle River:Prentice Hall PTR, 2002.
|
[2] |
Goldsmith A. Wireless communications[M]. Beijing: People's Posts and Telecommunications Publishing House, 2007.
|
[3] |
Olasupo T O, Otero C E, Otero L D, et al. Path loss models for low-power, low-data rate sensor nodes for smart car parking systems[J]. IEEE Transactions on Intelligent Transportation Systems, 2017(9):1-10.
|
[4] |
Ensky A B. Wireless positioning technologies and applications[M]. Fitchburg:Artech House, 2016.
|
[5] |
鲍金玲, 王斌, 杨晓春, 等. 路网环境下的最近邻查询技术[J]. 软件学报, 2018, 29(3):642-662.
|
|
Bao Jinling, Wang Bin, Yang Xiaochun, et al. Nearest neighbor query in road networks[J]. Journal of Software, 2018, 29(3):642-662.
|
[6] |
Cheffena M, Mohamed M. Empirical path loss models for wireless sensor network deployment in snowy environments[J]. IEEE Antennas and Wireless Propagation Letters, 2017, 33(9):151-168.
|
[7] |
Dashti M, Yiu S, Yousefi S, et al. RSSI localization with gaussian processes and tracking[C]. San Diego:IEEE Globecom Workshops, 2016.
|
[8] |
毋雪雁, 王水花, 张煜东. K最近邻算法理论与应用综述[J]. 计算机工程与应用, 2017, 53(21):1-7.
|
|
Wu Xueyan, Wang Shuihua, Zhang Yudong. Survey on theory and application of K-nearest-neighbors algorithm[J]. Computer Engineering and Applications, 2017, 53(21):1-7.
|
[9] |
Mohd B J, Amro I, Alhasani A. Indoor Wi-Fi tracking system using fingerprinting and Kalman filter[C]. Aqaba:IEEE Jordan Conference on Applied Electrical Engineering and Computing Technologies,IEEE, 2017.
|
[10] |
Xie Y, Xiong J, Li M, et al. MD-track: leveraging multi-dimensionality in passive indoor Wi-Fi tracking[C]. Beijing:The Twenty-fifty Annual International Conference, 2019.
|
[11] |
余东平, 何谢, 齐扬阳, 等. 基于变分贝叶斯推理的多目标无源定位算法[J]. 南京邮电大学学报(自然科学版), 2018, 38(2):48-53,59.
|
|
Yu Dongping, He Xie, Qi Yangyang, et al. Variational Bayesian inference based multi-target device-free localization algorithm[J]. Journal of Nanjing University of Posts and Telecommunications(Natural Science), 2018, 38(2):48-53,59.
|
[12] |
Basiouny Y, Arafa M, Sarhan A M. Enhancing Wi-Fi fingerprinting for indoor positioning system using single multiplicative neuron and PCA algorithm[C]. Cairo:The Tweifth International Conference on Computer Engineering and Systems, 2017.
|
[13] |
齐全. 基于神经网络的信号检测[D]. 南京:南京航空航天大学, 2018.
|
|
Qi Quan. Signal detection based on neural network[D]. Nanjing:Nanjing University of Aeronautics and Astronautics, 2018.
|
[14] |
Rui Z, Chen J, Xiang L, et al. CSI fingerprinting with SVM regression to achieve device-free passive localization[C]. Macau:IEEE the Eighteenth International Symposium on World of Wireless,Mobile and Multimedia Networks, 2017.
|
[15] |
Wu C L, Fu L C, Lian F L. WLAN location determination in E-home via support vector classification[C]. Taipei:IEEE International Conference on Networking,Sensing and Control, 2004.
|
[16] |
North E, Georgy J, Iqbal U, et al. Improved Inertial/Odometry/GPS positioning of wheeled robots even in GPS-Denied environments[M]. New York:InTech, 2012.
|
[17] |
Borenstein J, Everett H R, Feng L, et al. Mobile robot positioning:Sensors and techniques[J]. Journal of Field Robotics, 2015, 14(4):231-249.
|
[18] |
Borenstein J, Everett H R, Feng L. Where am I? Sensors and methods for mobile robot positioning[J]. Journal of Umich, 1996(9):533-542.
|
[19] |
Xu Z, Wei Y, You K, et al. Vehicle autonomous localization in local area of coal mine tunnel based on vision sensors and ultrasonic sensors[J]. Plos One, 2017, 12(1):1012-1029.
|
[20] |
Nyqvist H E, Skoglund M A, Hendeby G, et al. Pose estimation using monocular vision and inertial sensors aided with ultra wide band[C]. Banff:International Conference on Indoor Positioning and Indoor Navigation,IEEE, 2015.
|
[21] |
Zaragoza O S, Plaza J, Olivera V M, et al. Robot localization using WiFi signal without intensity map[J]. Josep A Ramon Guasch, 2004(7):79-88.
|
[22] |
史肖冰, 郭德贵, 曹捷. 基于自适应Hata模型的无线电发射源定位方法[J]. 吉林大学学报(理学版), 2020, 58(1):109-112.
|
|
Shi Xiaobing, Guo Degui, Cao Jie. Radio transmitter location method based on adaptive Hata model[J]. Journal of Jilin University(Science Edition), 2020, 58(1):109-112.
|
[23] |
Yao W, Ma L. Research and application of indoor positioning method based on fixed infrared beacon[C]. Wuhan:China Control Conference, 2018.
|
[24] |
张君龙. 基于线阵CCD的激光模拟精度射击光线检测定位研究[D]. 济南:山东大学, 2018.
|
|
Zhang Junlong. Research on laser simulation precision shooting ray detection location based on linear image sensor[D]. Jinan:Shandong University, 2018.
|
[25] |
Becker C, Ribas D, Ridao P. Simultaneous sonar beacon localization & AUV navigation[J]. IFAC Proceedings Volumes, 2012, 45(27):200-205.
|
[26] |
Bayat M, Aguiar A P. SLAM for an AUV using vision and an acoustic beacon[C]. Boston:IEEE Conference on Communication, 2010.
|
[27] |
Mori S, Hida K, Sawada K. Advanced car positioning method using infrared beacon[C]. Chicago:International Conference on Its Telecommunications,IEEE, 2009.
|
[28] |
梁民赞, 费志刚. 高精度舰艇声纳测量误差标定方法[J]. 兵器装备工程学报, 2018, 39(7):79-82.
|
|
Liang Minzan, Fei Zhigang. High accuracy error method of naval vessels sonar[J]. Journal of Sichuan Ordnance, 2018, 39(7):79-82.
|
[29] |
Lee S J, Lim J, Tewolde G S, et al. Autonomous tour guide robot by using ultrasonic range sensors and QR code recognition in indoor environment[C]. New York:International Conference on Its Telecommunications,IEEE, 2014.
|
[30] |
杨素珍. 基于激光传感器定位的非完整AGV导引控制[J]. 集美大学学报(自然科学版), 2018, 23(5):373-377.
|
|
Yang Suzhen. Guidance control of nonholonomic AGV with location based on laser sensor[J]. Journal of Jimei University(Natural Science), 2018, 23(5):373-377.
|
[31] |
Elfes A. A sonar-based mapping and navigation system[C]. Atlanta:IEEE International Conference on Robotics and Automation Proceedings,IEEE, 2003.
|
[32] |
Delgado E, Barreiro A. Sonar-based robot navigation using nonlinear robust observers[J]. Automatica, 2003, 39(7):1195-1203.
doi: 10.1016/S0005-1098(03)00089-X
|
[33] |
Abrate F, Bona B, Indri M. Experimental EKF-based SLAM for mini-rovers with IR sensors only[C]. London:European Conference on Mobile Robots, 2007.
|
[34] |
Abrate F, Bona B, Indri M. Monte Carlo localization of mini-rovers with low-cost IR sensors[C]. Berlin:IEEE/ASME International Conference on Advanced Intelligent Mechatronics,IEEE, 2007.
|
[35] |
Parker R, Valaee S. Vehicular node localization using received-signal-strength indicator[J]. IEEE Transactions on Vehicular Technology, 2007, 56(6):3371-3380.
doi: 10.1109/TVT.2007.907687
|
[36] |
彭毅弘, 郑凌云. 基于无线ZigBee技术的隧道监测系统设计[J]. 仪表技术与传感器, 2018(11):68-71,75.
|
|
Peng Yihong, Zheng Lingyun. Design of tunnel monitoring system based on wireless ZigBee technology[J]. Instrument Technique and Sensor, 2018(11):68-71,75.
|
[37] |
Dudley D, Lienard M, Mahmoud S, et al. Wireless propagation in tunnels[J]. IEEE Antennas and Propagation Magazine, 2007, 49(2):11-26.
|
[38] |
毛荣富, 苏常伟, 朱海潮. 弱耦合封闭声腔的声辐射模态理论与计算[J]. 声学学报, 2019, 44(3):297-302.
|
|
Mao Rongfu, Su Changwei, Zhu Haichao. Theory and calculation for acoustic radiation mode of weak coupling enclosure[J]. Acta Acustica, 2019, 44(3):297-302.
|
[39] |
黄起, 何思远, 林海, 等. 谐振区目标散射特性与曲面绕射机理的研究[J]. 电波科学学报, 2019, 34(1):104-110.
|
|
Huang Qi, He Siyuan.Lin Hai, et al. Scattering characteristics of targets in resonant region and diffraction mechanism of curved surface[J]. Chinese Journal of Radio Science, 2019, 34(1):104-110.
|
[40] |
Ying W, Safavi-Naeini S. A hybrid technique based on combining ray tracing and FDTD methods for site-specific modeling of indoor radio wave propagation[J]. IEEE Transactions on Antennas & Propagation, 2000, 48(5):743-754.
|
[41] |
周昭荣. 基于TD-LTE的宽带数字集群通信系统研究[J]. 电子测试, 2019(13):92-93,98.
|
|
Zhou Zhaorong. Research on broadband digital trunking communication system based on TD-LTE[J]. Electronic Test, 2019(13):92-93,98.
|