Hybrid Interference Mitigation Using Analog Prewhitening
ID:48 View Protection:ATTENDEE Updated Time:2020-08-05 10:17:00 Hits:1130 Oral Presentation

Start Time:2020-06-09 14:20(Asia/Shanghai)

Duration:20min

Session:R Regular Session » R10MIMO Systems

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Abstract
Strong interferences occur in several wireless scenarios, such as full-duplex wireless communications and heterogenous networks in unlicensed spectrum. Because strong interferences can cause excessive quantization noise in the receiver's analog-to-digital converters (ADC), mitigation of strong interferences needs to be conducted not only after but before the ADCs, i.e., via hybrid processing -- an actively researched topic in recent years. In this paper, we propose to use an $M$-input $M$-output analog phase shifter network (PSN) between the receiving antennas and the ADCs to prewhiten spatially the interferences (plus signal and noise). This scheme, referred to as the Hybrid Interference Mitigation using Analog Prewhitening (HIMAP), requires no information about the interferences except an estimated spatial covariance matrix. Before the ADCs, the HIMAP scheme suppresses the strong interferences through optimizing the PSN; after the ADCs, the HIMAP suppresses the residual interferences through employing minimum mean squared error (MMSE) beamforming. The simulation results verify the effectiveness of the HIMAP scheme.
Keywords
interference mitigation; phase shifter network; ADC resolution; full-duplex wireless; hybrid signal processing
Speaker
Wei Zhang
Fudan University, China

Submission Author
Wei Zhang Fudan University, China
Yi Jiang Fudan University, China
Bin Zhou Shanghai Institute of Microsystem and Information Technology, Chinese Academy of Sciences, China
Die Hu Fudan University, China
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Important Date
  • Conference Date

    Jun 08

    2020

    to

    Jun 11

    2020

  • Jan 12 2020

    Draft paper submission deadline

  • Apr 15 2020

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  • Dec 31 2020

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Sponsored By
IEEE Signal Processing Society
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Zhejiang University
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