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dc.contributor.authorDeram, Sai Pavan 
dc.contributor.authorArdah, Khaled
dc.contributor.authorWidmer, Joerg 
dc.contributor.authorHaardt, Martin
dc.date.accessioned2025-07-18T13:31:44Z
dc.date.available2025-07-18T13:31:44Z
dc.date.issued2025-10
dc.identifier.urihttps://hdl.handle.net/20.500.12761/1953
dc.description.abstractSubspace-based methods for R-D harmonic retrieval with non-circular (NC) sources provide advantages like improved resolution but face high computational demands. To address this, we propose a tensor-based framework that directly structures the augmented measurement tensor inherent to NC sources. We develop two variants: R-D Tensorized NC Tensor ESPRIT (Non-Circular Standard Tensor ESPRIT) and its real-valued counterpart R-D Tensorized NC Unitary Tensor ESPRIT (Non- Circular Unitary Tensor ESPRIT). Our complexity analysis reveals that R-D Tensorized NC Tensor ESPRIT reduces the computations by 75% for R=4 case compared to existing NC R-D ESPRIT methods by leveraging a unified higher dimensional structure with NC sources. Simulations confirm that R-D Tensorized NC Unitary Tensor ESPRIT retains the benefits of NC signal processing—enhanced resolution and identifiability—while achieving comparable accuracy to standard approaches at a significantly reduced computational cost.es
dc.language.isoenges
dc.titleEfficient Estimation of Non-Circular (NC) Wavefronts via R-D Tensorized NC Tensor-ESPRIT-type Algorithmses
dc.typeconference objectes
dc.conference.date26-29 October 2025es
dc.conference.placeAsilomar Conference Grounds, Pacific Grove, California, USAes
dc.conference.titleAsilomar Conference on Signals, Systems and Computers*
dc.event.typeconferencees
dc.pres.typepaperes
dc.type.hasVersionAOes
dc.rights.accessRightsembargoed accesses
dc.description.refereedTRUEes
dc.description.statusinpresses


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