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Da Rosa Zanatta, Mateus; Costa, João Paulo Carvalho Lustosa da; Antreich, Felix; Haardt, Martin; Elger, Gordon; Lopes De Mendon¸ca, Fábio Lúcio; De Sousa, Rafael Timóteo
Tensor-based framework with model order selection and high accuracy factor decomposition for time-delay estimation in dynamic multipath scenarios. - In: IEEE access, ISSN 2169-3536, Bd. 8 (2020), S. 174931-174942

Global Navigation Satellite Systems (GNSS) are crucial for applications that demand very accurate positioning. Tensor-based time-delay estimation methods, such as CPD-GEVD, DoA/KRF, and SECSI, combined with the GPS3 L1C signal, are capable of, significantly, mitigating the positioning degradation caused by multipath components. However, even though these schemes require an estimated model order, they assume that the number of multipath components is constant. In GNSS applications, the number of multipath components is time-varying in dynamic scenarios. Thus, in this paper, we propose a tensor-based framework with model order selection and high accuracy factor decomposition for time-delay estimation in dynamic multipath scenarios. Our proposed approach exploits the estimates of the model order for each slice by grouping the data tensor slices into sub-tensors to provide high accuracy factor decomposition. We further enhance the proposed approach by incorporating the tensor-based Multiple Denoising (MuDe).



https://doi.org/10.1109/ACCESS.2020.3024597
Häfner, Stephan; Thomä, Reiner
Compensation of motion-induced phase errors and enhancement of Doppler unambiguity in TDM-MIMO systems by model-based estimation. - In: IEEE sensors letters, ISSN 2475-1472, Volume 4 (2020), issue 10, 7003504, 4 Seiten

Utilization of multiple input multiple output (MIMO) systems in radar and channel sounding has gained increased attention in recent years. Quite often, time-division multiplexing (TDM) is employed to realize orthogonal waveforms at the transmitter. Apart from its advantages, TDM has two severe drawbacks. First, motion-induced phase variations become indistinguishable from phase migration due to the signal's arrival direction. This is termed angle-Doppler coupling, which causes ambiguities in angle, and Doppler estimation. Second, the unambiguously resolvable Doppler, i.e., the Doppler bandwidth, is reduced. In this letter, a model-based estimation approach will be proposed, which compensates for angle-Doppler coupling, and restores the Doppler bandwidth. A data model for the MIMO observations is derived, which is exploited by a maximum likelihood estimator to infer angle, delay, and Doppler from the observations. The performance of the proposed approach will be testified by simulations.



https://doi.org/10.1109/LSENS.2020.3020700
E-Asim, Fazal-; Almeida, André L. F. de; Haardt, Martin; Cavalcante, Charles C.; Nossek, Josef A.
Rank-one detector for Kronecker-structured constant modulus constellations. - In: IEEE signal processing letters, ISSN 1558-2361, Bd. 27 (2020), S. 1420-1424

To achieve a reliable communication with short data blocks, we propose a novel decoding strategy for Kronecker-structured constant modulus signals that provides low bit error ratios (BERs) especially in the low energy per bit to noise power spectral density ratio (E_b/N_o). The encoder exploits the fact that any M-PSK constellation can be factorized as Kronecker products of lower or equal order PSK constellation sets. A construction of two types of schemes is first derived. For such Kronecker-structured schemes, a conceptually simple decoding algorithm is proposed, referred to as Kronecker-RoD (rank-one detector). The decoder is based on a rank-one approximation of the "tensorized" received data block, has a built-in noise rejection capability and a smaller implementation complexity than state-of-the-art detectors. Compared with convolutional codes with hard and soft Viterbi decoding, Kronecker-RoD outperforms the latter in BER performance at same spectral efficiency.



https://doi.org/10.1109/LSP.2020.3010133
Semper, Sebastian; Döbereiner, Michael; Pawar, Sankalp; Landmann, Markus; Del Galdo, Giovanni
eadf: representation of far-field antenna responses in Python. - In: SoftwareX, ISSN 2352-7110, Bd. 12 (2020), 100583, S. 1-6

https://doi.org/10.1016/j.softx.2020.100583
Mostafa, Mohamed H.; Chamaani, Somayyeh; Sachs, Jürgen
Singular spectrum analysis-based algorithm for vitality monitoring using M-sequence UWB sensor. - In: IEEE sensors journal, ISSN 1558-1748, Bd. 20 (2020), 9, S. 4787-4802

https://doi.org/10.1109/JSEN.2019.2962721
Akbarpour, Alireza; Chamaani, Somayyeh; Sachs, Jürgen; Del Galdo, Giovanni
Clutter removal of near-field UWB SAR imaging for pipeline penetrating radar. - In: IEEE journal of selected topics in applied earth observations and remote sensing, ISSN 2151-1535, Bd. 13 (2020), S. 1527-1539

https://doi.org/10.1109/JSTARS.2020.2983891
Valle de Lima, Daniel; Da Rosa Zanatta, Mateus; Costa, João Paulo Carvalho Lustosa da; de Sousa Júnior, Rafael Timóteo; Haardt, Martin
Robust tensor-based techniques for antenna array-based GNSS receivers in scenarios with highly correlated multipath components. - In: Digital signal processing, ISSN 1051-2004, Bd. 101 (2020), 102715

https://doi.org/10.1016/j.dsp.2020.102715
Naskovska, Kristina; Lau, Stephan; Korobkov, Alexey A.; Haueisen, Jens; Haardt, Martin
Coupled CP decomposition of simultaneous MEG-EEG signals for differentiating oscillators during photic driving. - In: Frontiers in neuroscience, ISSN 1662-453X, Bd. 14 (2020), 261, S. 1-18

https://doi.org/10.3389/fnins.2020.00261
Weise, Konstantin; Poßner, Lucas; Müller, Erik; Gast, Richard; Knösche, Thomas R.
Pygpc: a sensitivity and uncertainty analysis toolbox for Python. - In: SoftwareX, ISSN 2352-7110, Bd. 11 (2020), 100450, S. 1-6

https://doi.org/10.1016/j.softx.2020.100450
Brachvogel, Marius; Niestroj, Michael; Zorn, Sören; Meurer, Michael; Hasnain, Syed N.; Stephan, Ralf; Hein, Matthias
A new array concept using spatially distributed subarrays for unambiguous GNSS interference mitigation in automotive applications. - In: Navigation, ISSN 2161-4296, Bd. 67 (2020), 1, S. 23-41

https://doi.org/10.1002/navi.353