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William Dale Blair
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2020 – today
- 2024
- [c16]William Dale Blair, Yaakov Bar-Shalom:
Design of Two-Model IMM Estimators for Tracking Maneuvering Targets. FUSION 2024: 1-8 - [c15]Shaun J. Hoyt, William Dale Blair, Aaron D. Lanterman:
Non-Linear Bias Mitigation in Multi-Sensor Multi-Track Fusion. FUSION 2024: 1-5 - 2023
- [j16]Benjamin P. Davis, William Dale Blair:
Efficient Gaussian Mixture Modeling of Long-Range 2-D Radar Measurements. IEEE Trans. Aerosp. Electron. Syst. 59(2): 1935-1945 (2023) - [j15]William Dale Blair, Yaakov Bar-Shalom:
MSE Design of Nearly Constant Velocity Kalman Filters for Tracking Targets With Deterministic Maneuvers. IEEE Trans. Aerosp. Electron. Syst. 59(4): 4180-4191 (2023) - 2022
- [c14]P. A. Miceli, William Dale Blair, Peter Willett:
Note on Autocorrelation of the Residuals of the NCV Kalman Filter Tracking a Maneuvering Target - Part 2. FUSION 2022: 1-8 - [c13]Alan Nussbaum, Byron Keel, William Dale Blair, Umakishore Ramachandran:
Real-Time Software Architecture for EM-Based Radar Signal Processing and Tracking. HPEC 2022: 1-7
2010 – 2019
- 2019
- [c12]Peter K. Willett, Terrence L. Ogle, W. D. Blair, Paul Miceli, Stefano Maranò:
Testing Unbiasedness of Testing a Sequence of Tests. CAMSAP 2019: 539-543 - [c11]W. D. Blair:
Performance of the NCV Kalman Filter with ECAE for Tracking Maneuvering Targets. FUSION 2019: 1-9 - [c10]P. A. Miceli, William Dale Blair:
Comparison of Linear Filters in the Presence of Biased Measurements. FUSION 2019: 1-10 - [c9]Terrence L. Ogle, William Dale Blair, Benjamin J. Slocumb, Darin T. Dunham:
Assessment of Hierarchical Multi-Sensor Multi-Target Track Fusion in the Presence of Large Sensor Biases. FUSION 2019: 1-7 - 2018
- [c8]Terrence L. Ogle, Ben P. Davis, William Dale Blair, Peter K. Willett:
Correlation of Gaussian Mixture Tracks. FUSION 2018: 1193-1200 - [c7]P. A. Miceli, William Dale Blair, M. M. Brown:
Isolating Random and Bias Covariances in Tracks. FUSION 2018: 2437-2444 - 2015
- [j14]John D. Glass, W. D. Blair:
Detection of rayleigh targets using adjacent matched filter samples. IEEE Trans. Aerosp. Electron. Syst. 51(3): 1927-1941 (2015) - [j13]John D. Glass, William Dale Blair, Aaron D. Lanterman:
Joint-Bin Monopulse Processing of Rayleigh Targets. IEEE Trans. Signal Process. 63(24): 6673-6683 (2015) - 2014
- [c6]John D. Glass, William Dale Blair, Yaakov Bar-Shalom:
Optimizing radar signal to noise ratio for tracking maneuvering targets. FUSION 2014: 1-7 - 2013
- [j12]Xiufeng Song, William Dale Blair, Peter Willett, Shengli Zhou:
Dominant-plus-Rayleigh Models for RCS: Swerling III/IV versus Rician. IEEE Trans. Aerosp. Electron. Syst. 49(3): 2058-2064 (2013) - 2012
- [j11]William Dale Blair, Paul Miceli:
Performance Prediction of Multisensor Tracking Systems for Single Maneuvering Targets. J. Adv. Inf. Fusion 7(1): 28-45 (2012) - [j10]Aliakbar A. Gorji, Ratnasingham Tharmarasa, W. D. Blair, Thia Kirubarajan:
Multiple Unresolved Target Localization and Tracking using Colocated MIMO Radars. IEEE Trans. Aerosp. Electron. Syst. 48(3): 2498-2517 (2012) - 2011
- [j9]Ryan D. Palkki, Aaron D. Lanterman, William Dale Blair:
Addressing Track Hypothesis Coalescence in Sequential K -Best Multiple Hypothesis Tracking. IEEE Trans. Aerosp. Electron. Syst. 47(3): 1551-1563 (2011) - [j8]Richard W. Osborne III, William Dale Blair:
Update to the Hybrid Conditional Averaging Performance Prediction of the IMM Algorithm. IEEE Trans. Aerosp. Electron. Syst. 47(4): 2967-2974 (2011) - [c5]William Dale Blair:
Design of nearly constant velocity track filters for brief maneuvers. FUSION 2011: 1-8 - 2010
- [j7]Tommer R. Ender, Ryan F. Leurck, Brian Weaver, Paul Miceli, W. D. Blair, Phil West, Dimitri Mavris:
Systems-of-Systems Analysis of Ballistic Missile Defense Architecture Effectiveness Through Surrogate Modeling and Simulation. IEEE Syst. J. 4(2): 156-166 (2010)
2000 – 2009
- 2009
- [c4]Mahendra Mallick, Barry L. Drake, Haesun Park, Andy Register, William Dale Blair, Phil West, Ryan D. Palkki, Aaron D. Lanterman, Darren Emge:
Comparison of Raman spectra estimation algorithms. FUSION 2009: 2239-2246 - 2008
- [c3]William Dale Blair:
Design of nearly constant velocity track filters for tracking maneuvering targets. FUSION 2008: 1-7 - 2007
- [j6]Peter Willett, William Dale Blair, Xin Zhang:
The Multitarget Monopulse CRLB for Matched Filter Samples. IEEE Trans. Signal Process. 55(8): 4183-4197 (2007) - [c2]William Dale Blair, Yaakov Bar-Shalom:
Historical perspectives of multisensor tracking. FUSION 2007: 1 - 2006
- [c1]Lisa M. Ehrman, William Dale Blair:
Comparison of methods for using target amplitude to improve measurement-to-track association in multi-target tracking. FUSION 2006: 1-8 - 2000
- [j5]Winnie Wong, William Dale Blair:
Steady-state tracking with LFM waveforms. IEEE Trans. Aerosp. Electron. Syst. 36(2): 701-709 (2000)
1990 – 1999
- 1996
- [j4]Ronald E. Helmick, William Dale Blair, S. A. Hoffman:
One-step fixed-lag smoothers for Markovian switching systems. IEEE Trans. Autom. Control. 41(7): 1051-1056 (1996) - 1995
- [j3]Ronald E. Helmick, W. D. Blair, S. A. Hoffman:
Fixed-interval smoothing for Markovian switching systems. IEEE Trans. Inf. Theory 41(6): 1845-1855 (1995) - 1993
- [j2]Ali Alouani, William Dale Blair:
Use of a kinematic constraint in tracking constant speed, maneuvering targets. IEEE Trans. Autom. Control. 38(7): 1107-1111 (1993) - [j1]Ali T. Alouani, P. Xia, T. R. Rice, William Dale Blair:
On the optimality of two-stage state estimation in the presence of random bias. IEEE Trans. Autom. Control. 38(8): 1279-1283 (1993)
Coauthor Index
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last updated on 2024-10-25 20:15 CEST by the dblp team
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