• Acta Optica Sinica
  • Vol. 44, Issue 3, 0306002 (2024)
Moxuan Han1、2, Taixia Shi1、2, Sunan Zhang1、2, and Yang Chen1、2、*
Author Affiliations
  • 1School of Communication & Electronic Engineering, East China Normal University, Shanghai 200241, China
  • 2Shanghai Key Laboratory of Multidimensional Information Processing, East China Normal University, Shanghai 200241, China
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    DOI: 10.3788/AOS231337 Cite this Article Set citation alerts
    Moxuan Han, Taixia Shi, Sunan Zhang, Yang Chen. Low-Complexity Digital-Assisted Nonlinear Analog Self-Interference Cancellation in the Optical Domain[J]. Acta Optica Sinica, 2024, 44(3): 0306002 Copy Citation Text show less
    Schematic of MIMO nonlinear self-interference optical domain cancellation system assisted by LS algorithm
    Fig. 1. Schematic of MIMO nonlinear self-interference optical domain cancellation system assisted by LS algorithm
    Illustration of crosstalk and nonlinearity in the case of two transmitting antennas
    Fig. 2. Illustration of crosstalk and nonlinearity in the case of two transmitting antennas
    Tap coefficients when the crosstalk coefficient is 0.1. (a) Directly computed tap coefficients; (b) tap coefficients obtained by taking absolute values and normalizing
    Fig. 3. Tap coefficients when the crosstalk coefficient is 0.1. (a) Directly computed tap coefficients; (b) tap coefficients obtained by taking absolute values and normalizing
    The order of the LS algorithm used for parameter estimation of each basis function and the runtime of the LS algorithm, under different threshold settings when the crosstalk coefficient is 0.1
    Fig. 4. The order of the LS algorithm used for parameter estimation of each basis function and the runtime of the LS algorithm, under different threshold settings when the crosstalk coefficient is 0.1
    EVM of the signal of interest and SIC depth after analog SIC and further digital SIC when the crosstalk coefficient is 0.1
    Fig. 5. EVM of the signal of interest and SIC depth after analog SIC and further digital SIC when the crosstalk coefficient is 0.1
    Electrical spectra and constellation diagrams without SIC, with analog SIC, and with analog and digital SIC when the crosstalk coefficient is 0.1. (a) Threshold is set to 0; (b) threshold is set to 0.06; (a) threshold is set to 0.2
    Fig. 6. Electrical spectra and constellation diagrams without SIC, with analog SIC, and with analog and digital SIC when the crosstalk coefficient is 0.1. (a) Threshold is set to 0; (b) threshold is set to 0.06; (a) threshold is set to 0.2
    Order of LS algorithm used for parameter estimation of each basis function and running time of LS algorithm, under different threshold settings when the crosstalk coefficient is 0.3
    Fig. 7. Order of LS algorithm used for parameter estimation of each basis function and running time of LS algorithm, under different threshold settings when the crosstalk coefficient is 0.3
    EVM of the signal of interest and SIC depth after analog SIC when the crosstalk coefficient is 0.3
    Fig. 8. EVM of the signal of interest and SIC depth after analog SIC when the crosstalk coefficient is 0.3
    Moxuan Han, Taixia Shi, Sunan Zhang, Yang Chen. Low-Complexity Digital-Assisted Nonlinear Analog Self-Interference Cancellation in the Optical Domain[J]. Acta Optica Sinica, 2024, 44(3): 0306002
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