Maximum Likelihood and IRLS Based Moving Source Localization With Distributed Sensors
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Hongbin Li | Braham Himed | Xudong Zhang | Fangzhou Wang | B. Himed | Hongbin Li | Fangzhou Wang | Xudong Zhang
[1] Pak-Chung Ching,et al. Time-of-arrival based localization under NLOS conditions , 2006, IEEE Transactions on Vehicular Technology.
[2] Alexander M. Haimovich,et al. Target Velocity Estimation and Antenna Placement for MIMO Radar With Widely Separated Antennas , 2010, IEEE Journal of Selected Topics in Signal Processing.
[3] La-or Kovavisaruch,et al. Modified Taylor-series method for source and receiver localization using TDOA measurements with erroneous receiver positions , 2005, 2005 IEEE International Symposium on Circuits and Systems.
[4] WADE FOY,et al. Position-Location Solutions by Taylor-Series Estimation , 1976, IEEE Transactions on Aerospace and Electronic Systems.
[5] K. C. Ho,et al. An accurate algebraic solution for moving source location using TDOA and FDOA measurements , 2004, IEEE Transactions on Signal Processing.
[6] Anthony Man-Cho So,et al. Robust Convex Approximation Methods for TDOA-Based Localization Under NLOS Conditions , 2016, IEEE Transactions on Signal Processing.
[7] Hongbin Li,et al. Maximum Likelihood Delay and Doppler Estimation for Passive Sensing , 2019, IEEE Sensors Journal.
[8] Jian Li,et al. Exact and Approximate Solutions of Source Localization Problems , 2008, IEEE Transactions on Signal Processing.
[9] Hing-Cheung So,et al. Linear Least Squares Approach for Accurate Received Signal Strength Based Source Localization , 2011, IEEE Trans. Signal Process..
[10] Gang Wang,et al. Robust NLOS Error Mitigation Method for TOA-Based Localization via Second-Order Cone Relaxation , 2015, IEEE Communications Letters.
[11] Hongbin Li,et al. Joint Delay and Doppler Estimation for Passive Sensing With Direct-Path Interference , 2016, IEEE Transactions on Signal Processing.
[12] David G. Michelson,et al. RSSI-Based Distributed Self-Localization for Wireless Sensor Networks Used in Precision Agriculture , 2015, IEEE Transactions on Wireless Communications.
[13] Jianbin Hu,et al. Generalized Cramér–Rao Bound for Joint Estimation of Target Position and Velocity for Active and Passive Radar Networks , 2015, IEEE Transactions on Signal Processing.
[14] K. C. Ho,et al. A simple and efficient estimator for hyperbolic location , 1994, IEEE Trans. Signal Process..
[15] Liang Sun,et al. A Scalable Multitarget Tracking System for Cooperative Unmanned Aerial Vehicles , 2017, IEEE Transactions on Aerospace and Electronic Systems.
[16] Emery N. Brown,et al. Convergence and Stability of Iteratively Re-weighted Least Squares Algorithms , 2014, IEEE Transactions on Signal Processing.
[17] Jeffrey H. Reed,et al. Position location using wireless communications on highways of the future , 1996, IEEE Commun. Mag..
[18] Qun Wan,et al. Solution and Analysis of TDOA Localization of a Near or Distant Source in Closed Form , 2019, IEEE Transactions on Signal Processing.
[19] Darko Musicki,et al. Mobile Emitter Geolocation and Tracking Using TDOA and FDOA Measurements , 2010, IEEE Transactions on Signal Processing.
[20] Anthony J. Weiss,et al. Direct Geolocation of Wideband Emitters Based on Delay and Doppler , 2011, IEEE Transactions on Signal Processing.
[21] Gianluigi Ferrari,et al. UWB-based localization in large indoor scenarios: optimized placement of anchor nodes , 2015, IEEE Transactions on Aerospace and Electronic Systems.
[22] Stephen P. Boyd,et al. Enhancing Sparsity by Reweighted ℓ1 Minimization , 2007, 0711.1612.
[23] K. C. Ho,et al. Bias analysis of maximum likelihood target location estimator , 2014, IEEE Transactions on Aerospace and Electronic Systems.
[24] Hongbin Li,et al. Signal Parameter Estimation for Passive Bistatic Radar With Waveform Correlation Exploitation , 2018, IEEE Transactions on Aerospace and Electronic Systems.
[25] K. C. Ho. Bias Reduction for an Explicit Solution of Source Localization Using TDOA , 2012, IEEE Transactions on Signal Processing.
[26] I. Daubechies,et al. Iteratively reweighted least squares minimization for sparse recovery , 2008, 0807.0575.
[27] S. Kay. Fundamentals of statistical signal processing: estimation theory , 1993 .
[28] Xiaodong Wang,et al. Joint Multitarget Tracking and Sensor Localization in Collaborative Sensor Networks , 2011, IEEE Transactions on Aerospace and Electronic Systems.
[29] Frankie K. W. Chan,et al. Semidefinite Programming Approach for Range-Difference Based Source Localization , 2009, IEEE Transactions on Signal Processing.
[30] Zhi Ding,et al. Source Localization in Wireless Sensor Networks From Signal Time-of-Arrival Measurements , 2011, IEEE Transactions on Signal Processing.
[31] Anthony J. Weiss,et al. Direct position determination of narrowband radio frequency transmitters , 2004, IEEE Signal Processing Letters.
[32] Rick S. Blum,et al. The Significant Gains From Optimally Processed Multiple Signals of Opportunity and Multiple Receive Stations in Passive Radar , 2014, IEEE Signal Processing Letters.
[33] Mohammad Ali Sebt,et al. Improved Algebraic Solution for Source Localization From TDOA and FDOA Measurements , 2018, IEEE Wireless Communications Letters.
[34] David Doria. A Detailed Solution to the Hyperbolic Lines of Position Formulation of the Shooter Detection Problem , 2013 .
[35] A.H. Sayed,et al. Network-based wireless location: challenges faced in developing techniques for accurate wireless location information , 2005, IEEE Signal Processing Magazine.
[36] Nirwan Ansari,et al. A Semidefinite Relaxation Method for Source Localization Using TDOA and FDOA Measurements , 2013, IEEE Transactions on Vehicular Technology.
[37] B. C. Ng,et al. On the Cramer-Rao bound under parametric constraints , 1998, IEEE Signal Processing Letters.
[38] Ngoc Hung Nguyen,et al. Optimal Geometry Analysis for Multistatic TOA Localization , 2016, IEEE Transactions on Signal Processing.