研究目的
Investigating the precoding design for full-duplex transmission in millimeter wave relay backhaul systems to achieve high spectral efficiency and eliminate self-interference.
研究成果
The proposed decoupled analog-digital SI cancellation precoding algorithm and enhanced algorithm effectively eliminate SI in FD mmWave relay backhaul systems, achieving higher spectral efficiency than HD transmission. The sub-connected structure offers lower hardware complexity but with reduced spectral efficiency. The study demonstrates the potential of combining mmWave and FD technologies for future wireless communications.
研究不足
The study assumes ideal conditions for some analyses, such as perfect SI elimination in ideal FD conditions. The performance of the sub-connected structure is limited compared to the fully-connected structure, and the number of RF chains and data streams affects the system's spectral efficiency.
1:Experimental Design and Method Selection:
The study proposes a decoupled analog-digital SI cancellation precoding algorithm and an enhanced algorithm for FD mmWave relay backhaul systems. It includes the design of RF and BB precoders to eliminate SI and achieve high spectral efficiency.
2:Sample Selection and Data Sources:
The study assumes a clustered mmWave channel model with Nclu = 3 scattering clusters and Npath = 10 paths per cluster. The complex gain αil satisfies CN (0, 1).
3:1).
List of Experimental Equipment and Materials:
3. List of Experimental Equipment and Materials: A ULA with interelement spacing d = λ/2 is assumed. The system operates at a central carrier frequency fc = 60 GHz with a bandwidth of 2 GHz.
4:Experimental Procedures and Operational Workflow:
The study involves designing RF and BB precoders, analyzing the spectral efficiency of the system under different configurations, and comparing the performance of fully-connected and sub-connected structures.
5:Data Analysis Methods:
The performance of the proposed algorithms is evaluated through numerical results, showing the spectral efficiency under different system configurations and the effectiveness of SI cancellation.
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