• Laser & Optoelectronics Progress
  • Vol. 59, Issue 23, 2301001 (2022)
Jinsheng Yang and Lei Zong*
Author Affiliations
  • School of Microelectronics, Tianjin University, Tianjin 030072, China
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    DOI: 10.3788/LOP202259.2301001 Cite this Article Set citation alerts
    Jinsheng Yang, Lei Zong. Modeling and Capacity Analysis of Terahertz Channel Based on Beckman-Kirchhoff Scattering Theory[J]. Laser & Optoelectronics Progress, 2022, 59(23): 2301001 Copy Citation Text show less
    Electromagnetic wave propagation model with LoS, reflected ray, and scattered ray between transmitter (Tx) and receiver (Rx)
    Fig. 1. Electromagnetic wave propagation model with LoS, reflected ray, and scattered ray between transmitter (Tx) and receiver (Rx)
    Relationship between reflection loss and incident angle of TE wave
    Fig. 2. Relationship between reflection loss and incident angle of TE wave
    Basic geometry of scattering at a rough surface
    Fig. 3. Basic geometry of scattering at a rough surface
    Roughness factor versus frequency at different incident angles. (a) Incident angle is 60°; (b) incident angle is 45°; (c) incident angle is 30°
    Fig. 4. Roughness factor versus frequency at different incident angles. (a) Incident angle is 60°; (b) incident angle is 45°; (c) incident angle is 30°
    Ratio of specular reflection to total power of ideal conductor's rough surface
    Fig. 5. Ratio of specular reflection to total power of ideal conductor's rough surface
    Verification of reflection coefficient and scattering coefficient. (a) Relationship between reflection coefficient and incident angle at 350 GHz frequency; (b) relationship between reflection coefficient and frequency with incident angles of 25° and 60°; (c) relationship between scattering coefficient and scattering angle with incident angle of 30°
    Fig. 6. Verification of reflection coefficient and scattering coefficient. (a) Relationship between reflection coefficient and incident angle at 350 GHz frequency; (b) relationship between reflection coefficient and frequency with incident angles of 25° and 60°; (c) relationship between scattering coefficient and scattering angle with incident angle of 30°
    Scene diagram of a simulated environment
    Fig. 7. Scene diagram of a simulated environment
    Channel capacities for different transmission powers, transmission distances, and power allocation strategies
    Fig. 8. Channel capacities for different transmission powers, transmission distances, and power allocation strategies
    Jinsheng Yang, Lei Zong. Modeling and Capacity Analysis of Terahertz Channel Based on Beckman-Kirchhoff Scattering Theory[J]. Laser & Optoelectronics Progress, 2022, 59(23): 2301001
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