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2017 | OriginalPaper | Chapter

9. 2D-DOAE Improvement Using ESPRIT with Doppler Correction

Authors : Youssef Fayad, Caiyun Wang, Qunsheng Cao

Published in: Transactions on Engineering Technologies

Publisher: Springer Singapore

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Abstract

In this chapter we focus on reducing target maneuver effect on 2D-DOAE process side by side with reducing the computational cost. Firstly, temporal subspace approach in ESPRIT method (T-ESPRIT) is introduced to decrease errors caused by the model nonlinearity effect, and to reduce the computational load. Second, multiple spatial subspaces in ESPRIT method (S-ESPRIT) is applied in order to enable multiple phase deference measurements with different resolutions. Additionally, the T-ESPRIT is combined with the S-ESPRIT using time difference of arrival (TDOA) method in order to form TS-ESPRIT method. Third, new method to estimate Doppler shift is introduced using subspace concept. Finally, the effect of Doppler frequency on the TS-ESPRIT method is derived in order to curb target maneuver effect on the DOAE process, which consequently achieves high performance at low SNR with low computational complexity.

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Metadata
Title
2D-DOAEDOAE Improvement Using ESPRITESPRIT with Doppler Correction
Authors
Youssef Fayad
Caiyun Wang
Qunsheng Cao
Copyright Year
2017
Publisher
Springer Singapore
DOI
https://doi.org/10.1007/978-981-10-2717-8_9

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