1 |
BARTEE J A. Genetic algorithms as a tool for phased array radar design. Monterey, USA: Naval Postgraduate, 2002.
|
2 |
ESSWEIN L C. Genetic algorithm design and testing of a random element 3-D 2.4 GHz phased array transmit antenna constructed of commercial RF microchips. Monterey, USA: Naval Postgraduate, 2003.
|
3 |
KOCAMAN İ. Distributed beamforming in a swarm UAV network. Monterey, USA: Naval Postgraduate, 2008.
|
4 |
LONG W J, BEN D, PAN M H, et al. Opportunistic digital array radar and its technical characteristic analysis. Proc. of the IET International Radar Conference, 2009: 1-4.
|
5 |
LONG W J, BEN D, ASIM B, et al. Pattern synthesis optimization of 3-D ODAR based on improved GA using LSFE method. Journal of Harbin Institute of Technology (New Series), 2011, 18 (1): 96- 100.
|
6 |
WANG Y C, WANG X, LIU H W, et al. On the design of constant modulus probing signals for MIMO radar. IEEE Trans. on Signal Processing, 2012, 60(8): 4432-4438.
|
7 |
DENG H, GENG Z, HIMED B. MIMO radar waveform design for transmit beamforming and orthogonality. IEEE Trans. on Aerospace and Electronic Systems, 2016, 52(3): 1421-1433.
|
8 |
XUE G R, DU Z C, WANG W, et al. Multi-beam dwell adaptive scheduling algorithm for helicopter-borne radar. Proc. of the 7th IEEE Joint International Information Technology and Artificial Intelligence Conference, 2014: 401-404.
|
9 |
SPASOJEVIC Z, DEDEO S, JENSEN R. Dwell scheduling algorithms for phased array antenna. IEEE Trans. on Asrospace and Electronic Systems, 2013, 49(1): 42-54.
|
10 |
GODRICH H, PETROPULU A P, POOR H V. Power allocation strategies for target localization in distributed multipleradar architectures. IEEE Trans. on Signal Processing, 2011, 59(7): 3226-3240.
|
11 |
GODRICH H, PETROPULU A P, POOR H V. Sensor selection in distributed multiple-radar architectures for localization: a knapsack problem formulation. IEEE Trans. on Signal Processing, 2012, 60(1): 247-260.
|
12 |
YAN J K, LIU H W, JIN B, et al. Power allocation algorithm for target tracking in unmodulated continuous wave radar network. IEEE Sensors Journal, 2015, 15 (2): 1098- 1108.
|
13 |
SKOLNIK M. Radar handbook. New York: McGrawHill Companies, 3rd ed 2008.
|
14 |
CHARNES A, COOPER W W. Chance-constrained programming. Management Science, 1959, 6 (1): 73- 79.
|
15 |
BUTLER J M. Multi-function radar tracking and control. London, UK: University College London, 1998.
|
16 |
ORMAN A J, SHAHANI A K, MOORE A R. Modelling for the control of a complex radar system. Computer & Operations Research, 1998, 25 (3): 239- 249.
|
17 |
CHENG T, HE Z S, TANG T. Dwell scheduling algorithm for multifunction phased array radars based on the scheduling gain. Journal of Systems Engineering and Electronics, 2008, 19 (3): 479- 485.
|
18 |
VINE M T. Fuzzy logic in radar resource management. Proc. of the IEE Colloquium on Multifunction Radar and Sonar Sensor Management Techniques, 2001: 1-4.
|
19 |
MIRANDA S L C, BAKER C J, WOODBRIDGE K, et al. Knowledge-based resource management for multifunction radar. IEEE Signal Processing Magazine, 2006, 23 (1): 66- 76.
|
20 |
MIRANDA S L C, BAKER C J, WOODBRIDGE K, et al. Fuzzy logic approach for prioritisation of radar tasks and sectors of surveillance in multifunction radar. IET Radar, Sonar & Navigation, 2007, 1 (2): 131- 141.
|
21 |
TICHAVSKY P, MURAVCHIK C H, NEHORAI A. Posterior Cramér-Rao bounds for discrete-time nonlinear filtering. IEEE Trans. on Signal Processing, 1998, 46(5): 1386-1396.
|
22 |
VAN TREES H L, BELL K L, WANG Y G. Bayesian Cramér-Rao bounds for multistatic radar. Proc. of the IEEE International Waveform Diversity & Design Conference, 2007: 856-859.
|
23 |
YAN J K, JIN B, LIU H W, et al. Prior knowledge-based simultaneous multibeam power allocation algorithm for cognitive multiple targets tracking in clutter. IEEE Trans. on Signal Processing, 2015, 63(2): 512-527.
|
24 |
YAN J K, LIU H W, JIN B, et al. Simultaneous multibeam resource allocation scheme for multiple target tracking. IEEE Trans. on Signal Processing, 2015, 63(12): 3110-3122.
|
25 |
YAN J K, LIU H W, JIN B, et al. Joint detection and tracking processing algorithm for target tracking in multiple radar system. IEEE Sensors Journal, 2015, 15 (11): 6534- 6541.
|
26 |
YAN J K, LIU H W, PU W Q, et al. Joint beam selection and power allocation for multiple target tracking in netted colocated MIMO radar system. IEEE Trans. on Signal Processing, 2016, 64(24): 6417-6427.
|
27 |
VAN TREES H L. Detection, estimation, modulation theory part III. New York: Wiley, 1971.
|
28 |
VAN TREES H L. Optimum array processing: detection, estimation, modulation theory IV. New York: Wiley, 2001.
|
29 |
KLIR G J, YUAN B. Fuzzy set and fuzzy logic: theory and applications. New Jersey: Prentice Hall PTR, 1995.
|
30 |
VAN TREES H L, BELL K L. Bayesian bounds for parameter estimation and nonlinear filtering/tracking. New York: Wiley, 2007.
|
31 |
GLASS J D, SMITH L D. MIMO radar resource allocation using posterior Cramér-Rao lower bounds. Proc. of the Aerospace Conference, 2011: 1-9.
|
32 |
RISTIC B, ARULAMPALAM S, GORDON N. Beyond the Kalman filter: particle filters for tracking applications. Norwell, MA: Artech House, 2004.
|
33 |
LIU B D. Theory and practice of uncertain programming. Berlin: Springer-Verlag, 2nd ed 2009.
|
34 |
MAMDANI E H. Application of fuzzy logic to approximate reasoning using linguistic synthesis. IEEE Trans. on Computers, 1977, 26(12): 1182-1191.
|
35 |
WANG L X. A course in fuzzy systems and control (International edition). New Jersey: Prentice-Hall International, 1997.
|
36 |
SWERLING P. Radar probability of detection for some additional fluctuating target cases. IEEE Trans. on Aerospace and Electronic Systems, 1997, 33(2): 698-709.
|