All-Digital Synchronization for SC/OFDM Mode of IEEE 802.15.3c and IEEE 802.11ad

IEEE Trans. on Circuits and Systems(2015)

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摘要
In this paper, a detection and estimation scheme and its architecture design for synchronization in 60 GHz indoor wireless transmission are presented. With the complementary Golay sequence based preamble structure, the proposed synchronization scheme is designed to detect the preamble and symbol boundary, estimate the frequency offset within a unified architecture. For the very high sampling speed at 60 GHz transmission, the architecture is designed as 8 ×-parallelism with feed-forward data path. This architecture supports the single carrier (SC) and orthogonal frequency-division multiplexing (OFDM) transmissions of both IEEE 802.15.3c and IEEE 802.11ad standards. The synchronization module is implemented as a part of a digital baseband receiver for IEEE 802.15.3c. The tolerance of maximum frequency offset is about 114.58 ppm and 171.87 ppm for SC and OFDM mode, respectively. The implementation result shows that it takes about 0.84 mm2 of area (equivalent to 307 k gate counts). The power consumption is about 59 mW in SC mode and 96 mW in OFDM (HSI) mode when operating at 1.76 GHz and 2.64 GHz chip rate, respectively.
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frequency 2.64 ghz,indoor wireless transmission,golay sequence,feedforward,ieee 802.15.3c,60 ghz,integrated circuit manufacture,power consumption,ofdm modulation,single-carrier orthogonal frequency-division multiplexing,golay codes,sc,ieee 802.11ad,detection scheme,personal area networks,symbol boundary detection,frequency 1.76 ghz,estimation theory,sc-ofdm transmission,symbol boundary,estimation scheme,cfo,sfo,synchronization,frequency 60 ghz,sc-ofdm mode,preamble detection,integrated circuit design,radio receivers,ofdm,all-digital synchronization,wireless lan,digital baseband receiver,synchronization scheme,feed-forward data path,power 96 mw,signal detection,microwave integrated circuits,synchronisation,synchronization module,indoor radio,hardware,estimation
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