Title: | Integrated Radio-Frequency Receivers for RF-to-Digital Converters |
Author(s): | Ul Haq, Faizan |
Date: | 2019 |
Language: | en |
Pages: | 106 + app. 103 |
Department: | Elektroniikan ja nanotekniikan laitos Department of Electronics and Nanoengineering |
ISBN: | 978-952-60-8719-1 (electronic) 978-952-60-8718-4 (printed) |
Series: | Aalto University publication series DOCTORAL DISSERTATIONS, 167/2019 |
ISSN: | 1799-4942 (electronic) 1799-4934 (printed) 1799-4934 (ISSN-L) |
Supervising professor(s): | Ryynänen, Jussi, Prof., Aalto University, Department of Electronics and Nanoengineering, Finland |
Thesis advisor(s): | Stadius, Kari, Dr., Aalto University, Department of Electronics and Nanoengineering, Finland |
Subject: | Electrical engineering |
Keywords: | wireless, wireless receiver, radio-requency receiver, RF-to-digital, converter, software-defined radio |
Archive | yes |
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Abstract:The widespread usage of mobile communication in recent decades has crowded the frequency spectrum with multiple bands and communication standards. An ideal wireless receiver for such a scenario will need to cover all frequency bands/standards with the possibility of instant reconfigurability through software control. The receiver should also be entirely integrated to gain the advantages of mobility and cheaper production costs. The ultimate goal of an ideal receiver is encapsulated in the concept of software-defined radio (SDR).
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Parts:[Publication 1]: F. Ul Haq, M. Englund, K. Stadius, M. Kosunen, K.B. Östman, K. Koli, J. Ryynänen. A wideband blocker resilient RF front-end with selective input-impedance matching for direct delta sigma receiver architectures. In IEEE NORCAS Conference, pp. 1-4, Copenhagen, Denmark, November 2016. DOI: 10.1109/NORCHIP.2016.7792880 View at Publisher [Publication 2]: F. Ul Haq, M. Englund, K. Stadius, M. Kosunen, K.B. Östman, K. Koli, J. Ryynänen. A wideband blocker resilient direct delta sigma receiver with selective input-impedance matching. In IEEE ISCAS Conference, pp. 1-4, Baltimore, MD USA, May 2017. DOI: 10.1109/ISCAS.2017.8050249 View at Publisher [Publication 3]: F. Ul Haq, M. Englund, Y. Antonov, K. Stadius, M. Kosunen, K.B. Östman, K. Koli, J. Ryynänen. Full-duplex wireless transceiver self-interference cancellation through FD-SOI buried-gate signaling. In IEEE ISCAS Conference, pp. 1-5, Florence, Italy, May 2018. DOI: 10.1109/ISCAS.2018.8351823 View at Publisher [Publication 4]: F. Ul Haq, M. Englund, Y. Antonov, K. Stadius, M. Kosunen, K.B. Östman, K. Koli, J. Ryynänen. A blocker-tolerant two-stage harmonic-rejection RF front-End. In IEEE RFIC symposium, Boston, USA, June 2019[Publication 5]: F. Ul Haq, K.B. Östman, M. Englund, K. Stadius, M. Kosunen, K. Koli, J. Ryynänen. A common-gate common-source low noise amplifier based RF front-end with selective input impedance matching for blocker-resilient receivers. Wiley journal of circuit theory and applications, 2018, pp. 1427-1442, Vol. 46, Issue 8. Full text in Acris/Aaltodoc: http://urn.fi/URN:NBN:fi:aalto-201806183309. DOI: 10.1002/cta.2473 View at Publisher [Publication 6]: F. Ul Haq, M. Englund, K. Stadius, M. Kosunen, K.B. Östman, K. Koli, J. Ryynänen. Quantization noise upconversion effects in mixer first direct delta-sigma receivers. Accepted for publication in Wiley journal of circuit theory and applications, 2019.[Publication 7]: M. Englund, F. Ul Haq, K. Stadius, M. Kosunen, K.B. Östman, K. Koli, J. Ryynänen. A systematic design method for direct delta-sigma receivers. IEEE transactions on Circuits and Systems I, pp. 2389-2402, Vol. 65, Issue. 8, August 2018. Full text in Acris/Aaltodoc: http://urn.fi/URN:NBN:fi:aalto-201901301390. DOI: 10.1109/TCSI.2017.2777895 View at Publisher [Publication 8]: F. Ul Haq, M. Englund, Y. Antonov, M. Tenhunen, K. Stadius, M. Kosunen, K.B. Östman, K. Koli, J. Ryynänen. A blocker-tolerant two-stage harmonic-rejection receiver. Submitted to IEEE transcations on Microwave theory and techniques, 2019.[Publication 9]: F. Ul Haq, M. Englund, K. Stadius, M. Kosunen, K.B. Östman, K. Koli, J. Ryynänen. A wideband blocker resilient direct delta sigma receiver with selective input-impedance matching. Submitted to Springer journal of analog integrated circuits and signal processing, 2019. |
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