Y. Tian, T.-M. Choi, X. Ding, R. Xing, and J. Zhao, ?A grid cumulative probability localization-based industrial risk monitoring system, ? IEEE Trans. Autom. Sci. Eng., vol. 16, no. 2, pp. 557-569, Apr. 2019.
S. V. Sibanyoni, D. T. Ramotsoela, B. J. Silva, and G. P. Hancke, ?A 2-D acoustic source localization system for drones in search and rescue missions, ? IEEE Sens. J., vol. 19, no. 1, pp. 332-341, Jan. 2019.
J. Shen, A. F. Molisch, and J. Salmi, ?Accurate passive location estimation using TOAmeasurements, ? IEEE Trans.Wireless Commun., vol. 11, no. 6, pp. 2182-2192, Jun. 2012.
Y. Zhu, D. Huang, and A. Jiang, ?Network localization using angle of arrival, ? in Proc. IEEE Int. Conf. Electro/Inf. Technol., 2008, pp. 205-210.
B. Huang, L. Xie, and Z. Yang, ?TDOA-based source localization with distance-dependent noises, ? IEEE Trans.WirelessCommun., vol. 14, no. 1, pp. 468-480, Jan. 2015.
K. Ho and W. Xu, ?An accurate algebraic solution for moving source location using TDOA and FDOA measurements, ? IEEE Trans. Signal Process., vol. 52, no. 9, pp. 2453-2463, Sep. 2004.
A. J. Weiss, ?On the accuracy of a cellular location system based on RSS measurements, ? IEEE Trans. Veh. Technol., vol. 52, no. 6, pp. 1508-1518, Nov. 2003.
K. Yoo, J. Chun, and C. Ryu, ?CRB-based optimal radar placement for target positioning, ? in Proc. IEEE Int. Conf. Radar, 2018, pp. 1-5.
K.Yoo and J.Chun, ?Analysis of optimal range sensor placement for tracking a moving target, ? IEEE Commun. Lett., vol. 24, no. 8, pp. 1700-1704, Aug. 2020.
D. B. Jourdan and N. Roy, ?Optimal sensor placement for agent localization, ? ACM Trans. Sensor Netw., vol. 4, no. 3, pp. 1-40, 2008.
O. Tekdas andV. Isler, ?Sensor placement for triangulation-based localization, ? IEEE Trans. Autom. Sci. Eng., vol. 7, no. 3, pp. 681-685, Jul. 2010.
A. N. Bishop, B. Fidan, B. D. Anderson, K. Dogancay, and P. N. Pathirana, ?Optimality analysis of sensor-target localization geometries, ? Automatica, vol. 46, no. 3, pp. 479-492, 2010.
N. H. Nguyen and K. Dogancay, ?Optimal geometry analysis for multistatic TOA localization, ? IEEE Trans. Signal Process., vol. 64, no. 16, pp. 4180-4193, Aug. 2016.
S. Xu, Y. Ou, and X. Wu, ?Optimal sensor placement for 3-D time-ofarrival target localization, ? IEEE Trans. Signal Process., vol. 67, no. 19, pp. 5018-5031, Oct. 2019.
Y. Li, G. Qi, and A. Sheng, ?Optimal deployment of vehicles with circular formation for bearings-only multi-target localization, ? Automatica, vol. 105, pp. 347-355, 2019.
N. Sahu, L. Wu, P. Babu, B. S. MR, and B. Ottersten, ?Optimal sensor placement for source localization: A unified ADMM approach, ? IEEE Trans. Veh. Technol., vol. 71, no. 4, pp. 4359-4372, Apr. 2022.
S. Xu, M. Rice, and F. Rice, ?Optimal TOA-sensor placement for two target localization simultaneously using shared sensors, ? IEEE Commun. Lett., vol. 25, no. 8, pp. 2584-2588, Aug. 2021.
S. M. Kay, Fundamentals of Statistical Signal Processing: Estimation Theory. Englewood Cliffs, NJ, USA: Prentice-Hall, Inc., 1993.
D. Ucinski, Optimal Measurement Methods for Distributed Parameter System Identification. Boca Raton, FL, USA: CRC Press, 2004.
A. Atkinson, A. Donev, and R. Tobias, Optimum Experimental Designs, With SAS. vol. 34. London, U.K.: Oxford Univ. Press, 2007.
N. Sahu and P. Babu, ?A new monotonic algorithm for the e-optimal experiment design problem, ? Statist. Probability Lett., vol. 174, 2021, Art. no. 109097.
K. Dogancay and H. Hmam, ?Optimal angular sensor separation for AOA localization, ? Signal Process., vol. 88, no. 5, pp. 1248-1260, 2008.
B. Yang and J. Scheuing, ?Cramer-Rao bound and optimum sensor array for source localization from time differences of arrival, ? in Proc. IEEE Int. Conf. Acoust., Speech, Signal Process., 2005, pp. iv/961-iv/964.
W. Meng, L. Xie, and W. Xiao, ?Optimal TDOA sensor-pair placement with uncertainty in source location, ? IEEE Trans. Veh. Technol., vol. 65, no. 11, pp. 9260-9271, Nov. 2016.
S. Xu and K. Dogancay, ?Optimal sensor placement for 3-D angle-ofarrival target localization, ? IEEE Trans. Aerosp. Electron. Syst., vol. 53, no. 3, pp. 1196-1211, Jun. 2017.
S. Xu, Y. Ou, and W. Zheng, ?Optimal sensor-target geometries for 3-D static target localization using received-signal-strength measurements, ? IEEE Signal Process. Lett., vol. 26, no. 7, pp. 966-970, Jul. 2019.
X. Fang and J. Li, ?Frame theory for optimal sensor augmentation problem of AOA localization, ? IEEE Signal Process. Lett., vol. 25, no. 9, pp. 1310-1314, Sep. 2018.
M. Hamdollahzadeh, R. Amiri, and F. Behnia, ?Optimal sensor placement for multi-source AOA localisation with distance-dependent noise model, ? IET Radar, Sonar Navigation, vol. 13, no. 6, pp. 881-891, 2019.
S. Xu, ?Optimal sensor placement for target localization using hybrid RSS, AOA and TOA measurements, ? IEEE Commun. Lett., vol. 24, no. 9, pp. 1966-1970, Sep. 2020.
Y. Zheng, J. Liu, M. Sheng, S. Han, Y. Shi, and S.Valaee, ?Toward practical access point deployment for angle-of-arrival based localization, ? IEEE Trans. Commun., vol. 69, no. 3, pp. 2002-2014, Mar. 2021.
S. Coraluppi and C. Carthel, ?Distributed tracking in multistatic sonar, ? IEEE Trans. Aerosp. Electron. Syst., vol. 41, no. 3, pp. 1138-1147, Jul. 2005.
A. Munaf?, G. Canepa, and K. D. LePage, ?Continuous active sonars for littoral undersea surveillance, ? IEEE J. Ocean. Eng, vol. 44, no. 4, pp. 1198-1212, Oct. 2019.
M. Chiani, A. Giorgetti, and E. Paolini, ?Sensor radar for object tracking, ? Proc. IEEE, vol. 106, no. 6, pp. 1022-1041, Jun. 2018.
S. Xu, L.Wu, K. Dogancay, and M. Alaee-Kerahroodi, ?Ahybrid approach to optimal TOA-sensor placement with fixed shared sensors for simultaneous multi-target localization, ? IEEE Trans. Signal Process., vol. 70, pp. 1197-1212, 2022.
M. Sadeghi, F. Behnia, and R. Amiri, ?Optimal sensor placement for 2-D range-only target localization in constrained sensor geometry, ? IEEE Trans. Signal Process., vol. 68, pp. 2316-2327, 2020.
C. Jiang, Z. Chen, R. Su, and Y. C. Soh, ?Group greedy method for sensor placement, ? IEEE Trans. Signal Process., vol. 67, no. 9, pp. 2249-2262, May 2019.
S. Boyd, N. Parikh, E. Chu, B. Peleato, and J. Eckstein, Distributed Optimization and Statistical Learning Via the Alternating Direction Method of Multipliers. Hanover, MA: now Publishers Inc., 2011.
L. Wu and D. P. Palomar, ?Radar waveform design via the majorizationminimization framework, ? in Proc. Radar Waveform Des. Based Optim. Theory, 2020, pp. 185-220.
Y. Sun, P. Babu, and D. P. Palomar, ?Majorization-minimization algorithms in signal processing, communications, and machine learning, ? IEEE Trans. Signal Process., vol. 65, no. 3, pp. 794-816, Feb. 2017.
Y. Hou and C. Yu, ?Autonomous target localization using quadrotor, ? in Proc. IEEE 26th Chin. Control Decis. Conf., 2014, pp. 864-869.
J. T. Isaacs, F. Quitin, L. R. G. Carrillo, U. Madhow, and J. P. Hespanha, ?Quadrotor control for RF source localization and tracking, ? in Proc. IEEE Int. Conf. Unmanned Aircr. Syst., 2014, pp. 244-252.
R. Robinson and F. Valentine, ?A curious trigonometric identity, ? Amer. Math. Monthly, vol. 64, no. 2, pp. 83-85, 1957.
V. Abolghasemi, S. Ferdowsi, and S. Sanei, ?A gradient-based alternating minimization approach for optimization of the measurement matrix in compressive sensing, ? Signal Process., vol. 92, no. 4, pp. 999-1009, 2012.
J. C. Bezdek and R. J. Hathaway, ?Convergence of alternating optimization, ? Neural, Parallel Sci. Comput., vol. 11, no. 4, pp. 351-368, 2003.
P. H. Sch?nemann, ?A generalized solution of the orthogonal procrustes problem, ? Psychometrika, vol. 31, no. 1, pp. 1-10, 1966.
Y.Wang, W. Yin, and J. Zeng, ?Global convergence ofADMMin nonconvex nonsmooth optimization, ? J. Sci. Comput., vol. 78, no. 1, pp. 29-63, 2019.
Q. Liu, X. Shen, and Y. Gu, ?Linearized ADMM for nonconvex nonsmooth optimization with convergence analysis, ? IEEE Access, vol. 7, pp. 76131-76144, 2019.
M. Hong, Z.-Q. Luo, and M. Razaviyayn, ?Convergence analysis of alternating direction method of multipliers for a family of nonconvex problems, ? SIAM J. Optim., vol. 26, no. 1, pp. 337-364, 2016.
M. Razaviyayn, M. Hong, and Z.-Q. Luo, ?A unified convergence analysis of block successive minimization methods for nonsmooth optimization, ? SIAM J. Optim., vol. 23, no. 2, pp. 1126-1153, 2013.
T. Wei, L. Wu, and B. M. Shankar, ?Sparse array beampattern synthesis via majorization-based ADMM, ? in Proc. IEEE 94th Veh. Technol. Conf., 2021, pp. 1-5.
W. Fan, J. Liang, G. Lu, X. Fan, and H. C. So, ?Spectrally-agile waveform design for wideband MIMO radar transmit beampattern synthesis via majorization-ADMM, ? IEEE Trans. Signal Process., vol. 69, pp. 1563-1578, 2021.
S. Mart?nez and F. Bullo, ?Optimal sensor placement and motion coordination for target tracking, ? Automatica, vol. 42, no. 4, pp. 661-668, 2006.
D. Shutin and B. H. Fleury, ?Sparse variational bayesian SAGE algorithm with application to the estimation of multipath wireless channels, ? IEEE Trans. signal Process., vol. 59, no. 8, pp. 3609-3623, Aug. 2011.
K. Panwar and P. Babu, ?Robust multistatic target localization in the presence of NLOS errors and outliers, ? IEEE Signal Process. Lett., vol. 29, pp. 2632-2636, 2022.
Z. Wang, Y. Wu, and Q. Niu, ?Multi-sensor fusion in automated driving: A survey, ? IEEE Access, vol. 8, pp. 2847-2868, 2020.
S. S. Blackman, ?Multiple hypothesis tracking for multiple target tracking, ? IEEE Aerosp. Electron. Syst.Mag., vol. 19, no. 1, pp. 5-18, Jan. 2004.
K. Dogancay andG. Ibal, ?Instrumental variable estimator for3Dbearingsonly emitter localization, ? in Proc. IEEE Int. Conf. Intell. Sensors, Sensor Netw. Inf. Process., 2005, pp. 63-68.