リケラボ論文検索は、全国の大学リポジトリにある学位論文・教授論文を一括検索できる論文検索サービスです。

リケラボ 全国の大学リポジトリにある学位論文・教授論文を一括検索するならリケラボ論文検索大学・研究所にある論文を検索できる

リケラボ 全国の大学リポジトリにある学位論文・教授論文を一括検索するならリケラボ論文検索大学・研究所にある論文を検索できる

大学・研究所にある論文を検索できる 「DOA-Based Weighted Spatial Filter Design for Sum and Difference Composite Co-Array」の論文概要。リケラボ論文検索は、全国の大学リポジトリにある学位論文・教授論文を一括検索できる論文検索サービスです。

コピーが完了しました

URLをコピーしました

論文の公開元へ論文の公開元へ
書き出し

DOA-Based Weighted Spatial Filter Design for Sum and Difference Composite Co-Array

Iwasaki Sho Nakamura Shogo 50212098 Ichige Koichi 10313470 横浜国立大学

2020.10.01

概要

This paper presents a weighted spatial filter (WSF) design method based on direction of arrival (DOA) estimates for a novel array configuration called a sum and difference composite co-array. A sum and difference composite co-array is basically a combination of sum and difference co-arrays. Our configuration can realize higher degrees of freedom (DOF) with the sum co-array part at a calculation cost lower than those of the other sparse arrays. To further enhance the robustness of our proposed sum and difference composite co-array we design an optimal beam pattern by WSF based on the information of estimated DOAs. Performance of the proposed system and the DOA estimation accuracy of close-impinging waves are evaluated through computer simulations.

この論文で使われている画像

参考文献

[1] B. Allen and M. Ghavami, Adaptive Array Systems: Fundamentals

and Applications, Wiley, 2005.

[2] C.A. Balanis and P.I. Ioannides, Introduction to Smart Antennas,

Morgan & Claypool, 2007.

IEICE TRANS. COMMUN., VOL.E103–B, NO.10 OCTOBER 2020

1154

[3] S. Chandran ed., Adaptive Antenna Arrays: Trends and Applications, Springer, 2004.

[4] R.O. Schmidt, “Multiple emitter location and signal parameter estimation,” IEEE Trans. Antennas Propag., vol.34, pp.276–280, March

1986.

[5] R.T. Hoctor and S.A. Kassam, “The unifying role of the coarray

in aperture synthesis for coherent and incoherent imaging,” Proc.

IEEE, vol.78, no.4, pp.735–752, April 1990.

[6] M.M. Hyder and K. Mahata, “Direction-of-arrival estimation using

a mixed `2,0 norm approximation,” IEEE Trans. Signal Process.,

vol.58, no.9, pp.4646–4655, Sept. 2010.

[7] M.C. Dogan and J.M. Mendel, “Applications of cumulants to array

processing Part I: Aperture extension and array calibration,” IEEE

Trans. Signal Process., vol.43, no.5, pp.1200–1216, May 1995.

[8] W.K. Ma, T.H. Hsieh, and C.Y. Chi, “DOA estimation of quasistationary signals via Khatri-Rao subspace,” IEEE Proc. Int. Conf.

Acoustic. Speech Signal Process., pp.2165–2168, April 2009.

[9] T. Terada, T. Nishimura, Y. Ogawa, T. Ohgane, and H. Yamada,

“DOA estimation for multi-band signal sources using compressed

sensing techniques with Khatri-Rao processing,” IEICE Trans.

Commun,, vol.E97-B, no.10, pp.2110–2117, Oct. 2014.

[10] J. Konishi, H. Yamada, and Y. Yamaguchi, “Optimum element arrangements in MIMO radar using Khatri-Rao product virtual array

processing,” IEICE Communications Express, vol.7, no.11, pp.407–

414, Nov. 2018.

[11] K. Hayashi, M. Nagahara, and T. Tanaka, “A user’s guide to compressed sensing for communications systems,” IEICE Trans. Commun., vol.E96-B, no.3, pp.685–712, March 2013.

[12] P. Pal and P.P. Vaidyanathan, “Nested arrays: A novel approach to

array processing with enhanced degrees of freedom,” IEEE Trans.

Signal Process., vol.58, no.8, pp.4167–4181, Aug. 2010.

[13] P. Pal and P.P. Vaidyanathan, “Nested arrays in two dimensions, Part

I: geometrical considerations,” IEEE Trans. Signal Process., vol.60,

no.9, pp.4694–4705, Sept. 2012.

[14] P.P. Vaidyanathan and P. Pal, “Sparse sensing with co-prime samplers and arrays,” IEEE Trans. Signal Process., vol.59, no.2, pp.573–

586, Feb. 2011.

[15] Z. Tan, Y.C. Eldar, and A. Nehorai, “Direction of arrival estimation

using co-prime arrays: A super resolution viewpoint,” IEEE Trans.

Signal Process., vol.62, no.21, pp.5565–5576, Nov. 2014.

[16] S. Iwazaki and K. Ichige, “Sum and difference composite co-array:

An extended array configuration toward higher degree of freedom,”

Proc. International Conference on Advances in Electrical, Electronic

and Systems Engineering (ICAEESE), pp.351–356, Nov. 2016.

[17] S. Iwazaki and K. Ichige, “Extended beamforming by sum and difference composite co-array for radio surveillance,” Proc. IEEE International Workshop on Information Forensics and Security (WIFS),

no.61, Dec. 2017.

[18] S. Iwazaki and K. Ichige, “Adaptive beamforming by array antenna

via using feedback section,” IEICE Trans. Fundamentals (Japanese

Edition), vol.J100-A, no.1, pp.70–78, Jan. 2017.

[19] S. Iwazaki and K. Ichige, “Extended beamforming by sum and difference composite co-array for real-valued signals,” IEICE Trans.

Fundamentals, vol.E102-A, no.7, pp.918–925, July 2019.

[20] S. Iwazaki and K. Ichige, “Underdetermined direction of arrival

estimation by sum and difference composite co-array,” Proc. 25th

IEEE International Conference on Electronics, Circuits and Systems

(ICECS), pp.669–672, Dec. 2018.

[21] S. Iwazaki and K. Ichige, “DOA-based weighted spatial filter design

for sum and difference composite co-array,” Proc. 26th IEEE International Conference on Electronics, Circuits and Systems (ICECS),

Nov. 2019.

[22] X. Wang, Z. Chen, S. Ren, and S. Cao, “DOA estimation based on

the difference and sum coarray for coprime arrays,” Digit. Signal

Process., vol.69, pp.22–31, Oct. 2017.

[23] X. Wang, X. Wang, and X. Lin, “Co-prime array processing with

sum and difference co-array,” Proc. 49th Asilomar Conf. Signals,

Systems and Computers, pp.380–384, Nov. 2015.

[24] J. Liu, Y. Zhang, Y. Lu, S. Ren, and S. Cao, “Augmented nested arrays with enhanced DOF and reduced mutual coupling,” IEEE Trans.

Signal Process., vol.65, no.21, pp.5549–5563, Nov. 2017.

[25] S. Nakamura, S. Iwazaki, and K. Ichige, “Optimum 2D sparse array

and its interpolation via nuclear norm minimization,” Proc. IEEE

International Symposium on Circuits and Systems (ISCAS), pp.1–

5, May 2019.

[26] S. Nakamura, S. Iwazaki, and K. Ichige, “Optimum 2D sparse array

and hole interpolation for accurate direction of arrival estimation,”

submitted to IEICE Trans. Communications.

Sho Iwazaki

received B.E., M.E. and

Dr. Eng. degrees in Electrical and Computer Engineering from Yokohama National University,

Japan, in 2009, 2011 and 2020. He joined Sony

Corporation in 2011 and currently with Sony Interactive Entertainment Inc. His research interests include array signal processing and its applications. He received the Best Student Paper

Award in Int. Conf. on Electrical, Electronic and

Systems Engineering (ICAEESE) in 2016.

Shogo Nakamura

received a B.E. and M.E.

degrees in Electrical and Computer Engineering

from Yokohama National University, Japan, in

2018 and 2020. He joined Denso Corporation

in 2020. His research interests include array antenna, DOA estimation, and digital signal processing.

Koichi Ichige

received B.E., M.E. and

Dr. Eng. degrees in Electronics and Computer

Engineering from the University of Tsukuba in

1994, 1996 and 1999, respectively. He joined

the Department of Electrical and Computer Engineering, Yokohama National University as a

research associate in 1999, where he is currently

a professor. He has been on leave to Swiss Federal Institute of Technology Lausanne (EPFL),

Switzerland as a visiting researcher in 2001–

2002. His research interests include digital signal processing, approximation theory and their applications to image processing and mobile communication. He served as an associate editor of

IEEE Transactions on Industrial Electronics in 2004–2008, that of Journal

of Circuits, Systems and Computers (JCSC) in 2012–2014, that of IEICE

Transactions on Fundamentals of Electronics, Communications and Computer Sciences (IEICE-EA) in 2015–2018, and currently serves as an editor

of IEICE-EA. He received “Meritorious Award on Radio” from the Association of Radio Industries and Businesses (ARIB) in 2006, and Best Letter

Award from IEICE Communication Society in 2007. He is a member of

IEEE.

...

参考文献をもっと見る

全国の大学の
卒論・修論・学位論文

一発検索!

この論文の関連論文を見る