MU-MIMO and Multi-Beam ISAC Hybrid Beamforming Design
This paper addresses the problem of fully-connected hybrid analog-digital (HAD) beamforming design for a multi-user and multi-beam ISAC systems. The traditional approaches to this problem involve a two-step process: first, a fully digital precoder is obtained, then the HAD beamforming is resolved by...
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| Vydané v: | Communication Systems, Networks and Digital Signal Processing, CNSDSP, International Symposium on s. 410 - 414 |
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| Hlavní autori: | , , , |
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| Jazyk: | English |
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17.07.2024
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| ISSN: | 2835-9038 |
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| Abstract | This paper addresses the problem of fully-connected hybrid analog-digital (HAD) beamforming design for a multi-user and multi-beam ISAC systems. The traditional approaches to this problem involve a two-step process: first, a fully digital precoder is obtained, then the HAD beamforming is resolved by minimizing the Euclidean distance to the previously designed fully digital precoder. However, the main drawback of this method is that the communication or radio-sensing constraints considered in the first phase may be not preserved after the second one. In contrast, our work prioritizes preserving these constraints by directly designing the fully-connected HAD beamforming. We maximize the weighted sum rate while subject to power budget and radio-sensing constraints. To solve this, we propose an innovative iterative alternate optimization algorithm. Simulation results demonstrate a performance close to that of a fully digital precoder, outperforming previous fully-connected hybrid beamforming methods for ISAC. |
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| AbstractList | This paper addresses the problem of fully-connected hybrid analog-digital (HAD) beamforming design for a multi-user and multi-beam ISAC systems. The traditional approaches to this problem involve a two-step process: first, a fully digital precoder is obtained, then the HAD beamforming is resolved by minimizing the Euclidean distance to the previously designed fully digital precoder. However, the main drawback of this method is that the communication or radio-sensing constraints considered in the first phase may be not preserved after the second one. In contrast, our work prioritizes preserving these constraints by directly designing the fully-connected HAD beamforming. We maximize the weighted sum rate while subject to power budget and radio-sensing constraints. To solve this, we propose an innovative iterative alternate optimization algorithm. Simulation results demonstrate a performance close to that of a fully digital precoder, outperforming previous fully-connected hybrid beamforming methods for ISAC. |
| Author | Silva, Adao Leyva, Leonardo Castanheira, Daniel Gameiro, Atilio |
| Author_xml | – sequence: 1 givenname: Leonardo surname: Leyva fullname: Leyva, Leonardo email: leoleval@av.it.pt organization: Instituto de Telecomunicações and Universidade de Aveiro,Aveiro,Portugal – sequence: 2 givenname: Daniel surname: Castanheira fullname: Castanheira, Daniel email: dcastanheira@av.it.pt organization: Instituto de Telecomunicações and Universidade de Aveiro,Aveiro,Portugal – sequence: 3 givenname: Adao surname: Silva fullname: Silva, Adao email: asilva@av.it.pt organization: Instituto de Telecomunicações and Universidade de Aveiro,Aveiro,Portugal – sequence: 4 givenname: Atilio surname: Gameiro fullname: Gameiro, Atilio email: amg@ua.pt organization: Instituto de Telecomunicações and Universidade de Aveiro,Aveiro,Portugal |
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| Snippet | This paper addresses the problem of fully-connected hybrid analog-digital (HAD) beamforming design for a multi-user and multi-beam ISAC systems. The... |
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| StartPage | 410 |
| SubjectTerms | Array signal processing Digital signal processing Euclidean distance ISAC Iterative algorithms iterative alternate optimization MIMO multi-beam steering Radio frequency radio-sensing Signal processing algorithms Simulation wireless communication |
| Title | MU-MIMO and Multi-Beam ISAC Hybrid Beamforming Design |
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