A Flexible Matrix Structure for Superresolution Delay Estimation
Research output: Contribution to book/Conference proceedings/Anthology/Report › Conference contribution › Contributed › peer-review
Contributors
Abstract
High-resolution and accurate path delay estimation (PDE) is a prerequisite for channel impulse response (CIR)-based localization. Several superresolution path delay estimation (SPDE) algorithms are proposed to provide precise path delay estimates while utilizing limited bandwidth. Moreover, multi-band SPDE enables the combination of frequency resources on non-consecutive bands. However, such combination may result in a hidden ambiguity problem related to the matrix structure and the underlying channel. In this paper, we propose a flexible PDE matrix structure that clearly identify the ambiguity. Consequently, the ambiguous estimates can be mitigated, benefiting from this flexibility. In addition, we provide examples and performance evaluations showing the impact of ambiguity on the performance and the corresponding solution.
Details
| Original language | English |
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| Title of host publication | 2023 IEEE International Conference on Communications Workshops |
| Publisher | Institute of Electrical and Electronics Engineers (IEEE) |
| Pages | 1410-1415 |
| Number of pages | 6 |
| ISBN (electronic) | 979-8-3503-3307-7 |
| ISBN (print) | 979-8-3503-3308-4 |
| Publication status | Published - Oct 2023 |
| Peer-reviewed | Yes |
Publication series
| Series | IEEE International Conference on Communications Workshops, ICC |
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| ISSN | 2164-7038 |
Conference
| Title | 58th IEEE International Conference on Communications |
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| Subtitle | Sustainable Communications for Renaissance |
| Abbreviated title | ICC 2023 |
| Conference number | 58 |
| Duration | 28 May - 1 June 2023 |
| Website | |
| Degree of recognition | International event |
| Location | La Nuvola Convention Center |
| City | Rome |
| Country | Italy |
External IDs
| ORCID | /0000-0003-3045-6271/work/212490772 |
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| ORCID | /0000-0002-0738-556X/work/212490847 |
Keywords
ASJC Scopus subject areas
Keywords
- CIR-based Localization, JC&S, Multi-band SPDE, PDE Matrix, SPDE