[1]
|
Han G J, Xu H H, Duong T Q, Jiang J F, Hara T. Localization algorithms of wireless sensor networks:a survey. Telecommunication Systems, 2013, 52(4):2419-2436 doi: 10.1007/s11235-011-9564-7
|
[2]
|
丁文东, 徐德, 刘希龙, 张大朋, 陈天.移动机器人视觉里程计综述.自动化学报, 2018, 44(3):385-400 http://www.aas.net.cn/CN/abstract/abstract19233.shtmlDing Wen-Dong, Xu De, Liu Xi-Long, Zhang Da-Peng, Chen Tian. Review on visual odometry for mobile robots. Acta Automatica Sinica, 2018, 44(3):385-400 http://www.aas.net.cn/CN/abstract/abstract19233.shtml
|
[3]
|
He J P, Cheng P, Chen J M, Shi L, Lu R X. Time synchronization for random mobile sensor networks. IEEE Transactions on Vehicular Technology, 2014, 63(8):3935-3946 doi: 10.1109/TVT.2014.2307076
|
[4]
|
Wang Y, Ho K C. Unified near-field and far-field localization for AOA and hybrid AOA-TDOA positionings. IEEE Transactions on Wireless Communications, 2018, 17(2):1242-1254 doi: 10.1109/TWC.2017.2777457
|
[5]
|
Xu S, Doǧançay K. Optimal sensor placement for 3-D angle-of-arrival target localization. IEEE Transactions on Aerospace and Electronic Systems, 2017, 53(3):1196-1211 doi: 10.1109/TAES.2017.2667999
|
[6]
|
Wang J, Zhang X, Gao Q H, Ma X R, Feng X Y, Wang H Y. Device-free simultaneous wireless localization and activity recognition with wavelet feature. IEEE Transactions on Vehicular Technology, 2017, 66(2):1659-1669 doi: 10.1109/TVT.2016.2555986
|
[7]
|
Liu J, Wang Z H, Peng Z, Cui J H, Fiondella L. Suave: swarm underwater autonomous vehicle localization. In: Proceedings of the 2014 IEEE INFOCOM-IEEE Conference on Computer Communications. Toronto, ON, Canada: IEEE, 2014. 64-72
|
[8]
|
Zhou Z, Peng Z, Cui J H, Shi Z J, Bagtzoglou A. Scalable localization with mobility prediction for underwater sensor networks. IEEE Transactions on Mobile Computing, 2011, 10(3):335-348 doi: 10.1109/TMC.2010.158
|
[9]
|
Luo H J, Wu K S, Gong Y J, Ni L M. Localization for drifting restricted floating ocean sensor networks. IEEE Transactions on Vehicular Technology, 2016, 65(12):9968-9981 doi: 10.1109/TVT.2016.2530145
|
[10]
|
贺华成, 王磊, 金鑫, 徐胜文.半潜平台锚泊辅助动力定位时域模拟研究.海洋工程, 2016, 34(5):117-124 http://d.old.wanfangdata.com.cn/Periodical/hygc201605014He Hua-Cheng, Wang Lei, Jin Xin, Xu Sheng-Wen. Research on time-domain simulations of mooring-assisted dynamic positioning system for a semi-submersible platform. The Ocean Engineering, 2016, 34(5):117-124 http://d.old.wanfangdata.com.cn/Periodical/hygc201605014
|
[11]
|
Yan J, Xu Z Q, Wan Y, Chen C L, Luo X Y. Consensus estimation-based target localization in underwater acoustic sensor networks. International Journal of Robust and Nonlinear Control, 2017, 27(9):1607-1627
|
[12]
|
Yan J, Xu Z Q, Luo X Y, Chen C L, Guan X P. Feedback-based target localization in underwater sensor networks:a multi-sensor fusion approach. IEEE Transactions on Signal and Information Processing over Networks, 2019, 5(1):168-180 doi: 10.1109/TSIPN.2018.2866335
|
[13]
|
徐博, 白金磊, 郝燕玲, 高伟, 刘亚龙.多AUV协同导航问题的研究现状与进展.自动化学报, 2015, 41(3):445-461 http://www.aas.net.cn/CN/abstract/abstract18624.shtmlXu Bo, Bai Jin-Lei, Hao Yan-Ling, Gao Wei, Liu Ya-Long. The research status and progress of cooperative navigation for multiple AUVs. Acta Automatica Sinica, 2015, 41(3):445-461 http://www.aas.net.cn/CN/abstract/abstract18624.shtml
|
[14]
|
Yan J, Yang X, Luo X Y, Chen C L. Energy-Efficient data collection over AUV-Assisted underwater acoustic sensor network. IEEE Systems Journal, 2018, 12(4):3519-3530 doi: 10.1109/JSYST.2017.2789283
|
[15]
|
Carroll P, Mahmood K, Zhou S L, Zhou H, Xu X K, Cui J H. On-demand asynchronous localization for underwater sensor networks. IEEE Transactions on Signal Processing, 2014, 62(13):3337-3348 doi: 10.1109/TSP.2014.2326996
|
[16]
|
Liu J, Wang Z H, Cui J H, Zhou S L, Yang B. A Joint Time synchronization and localization design for mobile underwater sensor networks. IEEE Transactions on Mobile Computing, 2016, 15(3):530-543 doi: 10.1109/TMC.2015.2410777
|
[17]
|
Mortazavi E, Javidan R, Dehghani M J, Kavoosi V. A robust method for underwater wireless sensor joint localization and synchronization. Ocean Engineering, 2017, 137:276-286 doi: 10.1016/j.oceaneng.2017.04.006
|
[18]
|
Zhang B B, Wang H Y, Zheng L M, Wu J F, Zhuang Z W. Joint synchronization and localization for underwater sensor networks considering stratification effect. IEEE Access, 2017, 5:26932-26943 doi: 10.1109/ACCESS.2017.2778425
|
[19]
|
Yan J, Zhang X N, Luo X Y, Wang Y X, Chen C L, Guan X P. Asynchronous localization with mobility prediction for underwater acoustic sensor networks. IEEE Transactions on Vehicular Technology, 2018, 67(3):2543-2556 doi: 10.1109/TVT.2017.2764265
|
[20]
|
Caccia M, Veruggio G. Guidance and control of a reconfigurable unmanned underwater vehicle. Control Engineering Practice, 2000, 8(1):21-37 doi: 10.1016/S0967-0661(99)00125-2
|
[21]
|
Julier S J, Uhlmann J K. New extension of the Kalman filter to nonlinear systems. In: Proceedings of the 1997 SPIE 3068, Signal Processing, Sensor Fusion, and Target Recognition VI. Orlando, FL, USA: SPIE, 1997.
|
[22]
|
Julier S, Uhlmann J, Durrant-Whyte H. A new method for the nonlinear transformation of means and covariances in filters and estimators. IEEE Transactions on Automatic Control, 2000, 45(3):477-482 doi: 10.1109/9.847726
|
[23]
|
Xiong K, Zhang H Y, Chan C W. Performance evaluation of UKF-based nonlinear filtering. Automatica, 2006, 42(2):261-270 doi: 10.1016/j.automatica.2005.10.004
|
[24]
|
Lefebvre T, Bruyninckx H, De Schuller J. Comment on "A new method for the nonlinear transformation of means and covariances in filters and estimators"[with authors0 reply]. IEEE Transactions on Automatic Control, 2002, 47(8):1406-1409 doi: 10.1109/TAC.2002.800742
|
[25]
|
Reif K, Gunther S, Yaz E, Unbehauen R. Stochastic stability of the discrete-time extended Kalman filter. IEEE Transactions on Automatic Control, 1999, 44(4):714-728 doi: 10.1109/9.754809
|
[26]
|
Li W Y, Wei G L, Han F, Liu Y R. Weighted average consensus-based unscented Kalman filtering. IEEE Transactions on Cybernetics, 2016, 46(2):558-567 doi: 10.1109/TCYB.2015.2409373
|