Verlagslink DOI: | 10.1109/TCSI.2017.2748380 | Titel: | Hardware-efficient QR-decomposition using bivariate numeric function approximation | Sprache: | Englisch | Autorenschaft: | Rust, Jochen Seidel, Pascal Knoop, Benjamin Paul, Steffen |
Schlagwörter: | Numeric function approximation; QR decomposition; Wireless communications | Erscheinungsdatum: | 20-Sep-2017 | Verlag: | IEEE | Zeitschrift oder Schriftenreihe: | IEEE transactions on circuits and systems | Zeitschriftenband: | 64 | Zeitschriftenausgabe: | 12 | Anfangsseite: | 3150 | Endseite: | 3159 | Zusammenfassung: | Bivariate function approximation has proven its feasibility in terms of hardware-efficient arithmetic signal processing. However, its impact on high performance QR decomposition (QRD) has only been roughly studied so far. In this paper, a novel hardware architecture for Givens-Rotation-based QRD is proposed targeting hardware efficient signal processing. To this end, an ingenious triangular systolic array structure is considered. Complex-valued matrices are efficiently processed by means of a sophisticated bivariate numeric function approximation methodology. In order to get a comprehensive insight in the performance, exhaustive evaluation is carried out with a modern multi-antenna wireless communication system. In detail, the proposed QRD hardware architecture is used in a suitable channel pre-coding setup. For a meaningful proof-of-concept, our work is evaluated on several levels of the computing stack. In addition, our design is implemented and physically synthesized in a state-of-the-art 65-nm Taiwan Semiconductor Manufacturing Company technology and compared with other publications. The results indicate our approach to be a powerful solution for hardware-based QRD, especially in terms of energy and area requirements. |
URI: | http://hdl.handle.net/20.500.12738/14062 | ISSN: | 1558-0806 | Begutachtungsstatus: | Diese Version hat ein Peer-Review-Verfahren durchlaufen (Peer Review) | Einrichtung: | Universität Bremen | Dokumenttyp: | Zeitschriftenbeitrag | Hinweise zur Quelle: | Vollständiger Titel der Zeitschrift: IEEE Transactions on Circuits and Systems I: Regular Papers |
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