Optimal deployment of vehicles with circular formation for bearings-only multi-target localization
暂无分享,去创建一个
Guoqing Qi | Yinya Li | Andong Sheng | Guoqing Qi | Yinya Li | A. Sheng
[1] Lu Liu,et al. Cooperative Control for Moving-Target Circular Formation of Nonholonomic Vehicles , 2017, IEEE Transactions on Automatic Control.
[2] Xiaoling Sun,et al. Nonlinear Integer Programming , 2006 .
[3] Lu Liu,et al. Distributed circular formation control of ring-networked nonholonomic vehicles , 2016, Autom..
[4] Lihua Xie,et al. Communication Aware Optimal Sensor Motion Coordination for Source Localization , 2016, IEEE Transactions on Instrumentation and Measurement.
[5] Saurabh Amin,et al. Sensor placement for fault location identification in water networks: A minimum test cover approach , 2015, Autom..
[6] H. Fudem,et al. Electronic Warfare II: Receivers , 1995 .
[7] Lihua Xie,et al. A Projection Based Fully Distributed Approach for Source Localization in Wireless Sensor Networks , 2013, Ad Hoc Sens. Wirel. Networks.
[8] N. Levanon. Lowest GDOP in 2-D scenarios , 2000 .
[9] Francesco Bullo,et al. Optimal sensor placement and motion coordination for target tracking , 2006, Autom..
[10] E. Ronald Schineller. Electronic Warfare I: Transmitters , 1995 .
[11] C. Floudas. Nonlinear and Mixed-Integer Optimization: Fundamentals and Applications , 1995 .
[12] Tong Heng Lee,et al. Optimal sensor placement for target localisation and tracking in 2D and 3D , 2012, Int. J. Control.
[13] Alfonso Farina,et al. Target tracking with bearings - Only measurements , 1999, Signal Process..
[14] Zhi Ding,et al. Optimum sensor placement for localization under log-normal shadowing , 2010, 2010 10th International Symposium on Communications and Information Technologies.
[15] Kutluyil Dogançay,et al. On the bias of linear least squares algorithms for passive target localization , 2004, Signal Process..
[16] Y. Jay Guo,et al. GDOP Analysis for Positioning System Design , 2009, IEEE Transactions on Vehicular Technology.
[17] S. Koteswara Rao,et al. Data fusion for underwater target tracking , 2010 .
[18] V. Aidala,et al. Observability Criteria for Bearings-Only Target Motion Analysis , 1981, IEEE Transactions on Aerospace and Electronic Systems.
[19] Lihua Xie,et al. Optimality Analysis of Sensor-Source Geometries in Heterogeneous Sensor Networks , 2013, IEEE Transactions on Wireless Communications.
[20] Brian D. O. Anderson,et al. Optimal path planning and sensor placement for mobile target detection , 2015, Autom..
[21] Hatem Hmam,et al. Optimal Sensor Velocity Configuration for TDOA-FDOA Geolocation , 2017, IEEE Transactions on Signal Processing.
[22] Jin-Woo Han,et al. Analysis of sensor-emitter geometry for emitter localisation using TDOA and FDOA measurements , 2017 .
[23] Kutluyil Dogançay,et al. Optimal angular sensor separation for AOA localization , 2008, Signal Process..
[24] Mohamed F. Younis,et al. Strategies and techniques for node placement in wireless sensor networks: A survey , 2008, Ad Hoc Networks.
[25] Winston K. G. Seah,et al. A Survey of Techniques and Challenges in Underwater Localization , 2011 .
[26] Thia Kirubarajan,et al. Estimation with Applications to Tracking and Navigation: Theory, Algorithms and Software , 2001 .
[27] Ronald L. Rivest,et al. Introduction to Algorithms , 1990 .
[28] J. Chaffee,et al. GDOP and the Cramer-Rao bound , 1994, Proceedings of 1994 IEEE Position, Location and Navigation Symposium - PLANS'94.
[29] Brian D. O. Anderson,et al. Optimality analysis of sensor-target localization geometries , 2010, Autom..
[30] Sheng Xu,et al. Optimal Sensor Placement for 3-D Angle-of-Arrival Target Localization , 2017, IEEE Transactions on Aerospace and Electronic Systems.
[31] Torsten Söderström,et al. Optimal sensor locations for nonparametric identification of viscoelastic materials , 2008, Autom..