Title :
Phase Error Evaluation in a Two-Path Receiver Front-End With On-Site Coding
Author :
Alwan, Elias A. ; Venkatakrishnan, Satheesh Bojja ; Akhiyat, Abe A. ; Khalil, Waleed ; Volakis, John L.
Author_Institution :
Dept. of Electr. & Comput. Eng., Ohio State Univ., Columbus, OH, USA
Abstract :
Recently, we proposed a code-modulated multipath receiver front-end to reduce the number of analog-to-digital converters (ADCs) behind antenna elements and realize significant area, cost, and power reduction. More specifically, code division multiplexing was implemented at the analog front-end for path combining into a single ADC. At the digital baseband, the reverse process was applied to recover signals pertaining to each path. Such front-ends are suitable for spatial diversity and multiplexing and for beamforming. For the latter, it is important to accurately predict the angle of arrival. That is, it is important to faithfully recover the phase difference between adjacent signal paths at the digital baseband. In this paper, the impact of on-site coding on phase error is examined for a two-path receiver using orthogonal Walsh-Hadamard codes of length 8. Simulations show that the relative phase difference, Δφ, between signal paths can be faithfully recovered at the digital baseband. Hardware implementation of a two-path receiver with on-site coding was realized and three different phase measurements were conducted, namely, Δφ = 27°, 40°, and 45°. These measurements confirmed that upon signal and code synchronization, the phases were faithfully recovered with minimal degradation.
Keywords :
Hadamard codes; adaptive antenna arrays; analogue-digital conversion; array signal processing; code division multiplexing; direction-of-arrival estimation; diversity reception; multipath channels; orthogonal codes; phase shifters; radio transceivers; synchronisation; ADC; analog-to-digital converters; angle-of-arrival prediction; antenna elements; code division multiplexing; code synchronization; code-modulated multipath receiver front-end; digital baseband; digital beamforming; on-site coding; orthogonal Walsh-Hadamard codes; phase difference recover; phase error evaluation; phase measurements; phase shifters; power reduction; reverse process; signal recovery; signal synchronization; spatial diversity; transceivers; two-path receiver front-end; wireless smart systems; Analog-digital conversion; Array signal processing; Baseband; Code division multiplexing; Digital systems; Encoding; Multipath channels; Phase measurement; Receiving antennas; Transceivers; Digital Beamforming; Digital beamforming; beamsteering; phase shifters; transceivers;
Journal_Title :
Access, IEEE
DOI :
10.1109/ACCESS.2015.2397697