研究目的
To develop a precompensation scheme and system parameters estimation method for low-cost nonlinear Tera-Hertz transmitters to enable QAM transmission and mitigate nonlinear distortions and I/Q imbalance effects.
研究成果
The proposed precompensation and estimation schemes effectively mitigate nonlinear distortions and I/Q imbalance, enabling QAM transmission in low-cost THz systems. Numerical results show significant improvements in spectrum control and distortion suppression, meeting 3GPP requirements even with frequency-dependent impairments.
研究不足
The study assumes static system parameters and uses offline estimation during testing/calibration. It may not fully address dynamic systems or frequency-dependent impairments in real-time scenarios. The computational complexity increases with upsampling factors and pilot sequence length.
1:Experimental Design and Method Selection:
The study involves deriving an accurate signal model for nonlinear THz systems with I/Q imbalance, proposing a precompensation scheme using gradient-descent algorithms, and developing a maximum-likelihood estimator for system parameters with alternating estimation.
2:Sample Selection and Data Sources:
Simulations use 16-QAM modulation symbols with a block size of M=128, pulse-shaping filters (rectangular and RRC), and parameters based on prior literature.
3:List of Experimental Equipment and Materials:
The setup includes a frequency-multiplier-last transmitter architecture with mixers, power amplifiers, nonlinear devices, bandpass filters, and a separate measurement circuitry for feedback.
4:Experimental Procedures and Operational Workflow:
The process involves generating pilot sequences, performing two-phase measurements (I and Q branches), applying precompensation algorithms, and evaluating performance through numerical simulations.
5:Data Analysis Methods:
Performance is assessed using power spectrum density, constellation diagrams, normalized error vector magnitude, and Cramér–Rao lower bounds, with simulations run over 10^4 blocks.
独家科研数据包,助您复现前沿成果,加速创新突破
获取完整内容-
CMOS transmitter
Signal generation and transmission in THz systems
-
Bandpass filter
BPF
Filters signals to allow desired frequency components
-
Power amplifier
PA
Amplifies the signal power
-
Nonlinear device
NLD
Introduces nonlinear distortions, modeled as a polynomial
-
Mixer
Modulates signals with local oscillator, subject to I/Q imbalance
-
Oscillator
Generates carrier frequency
-
Pulse-shaping filter
RRC
Shapes the baseband signal to control spectrum
-
Construction filter
RC
Interpolates samples to form continuous-time signal
-
Receive filter
r(t)
Filters received signals in feedback chain
-
Measurement circuitry
Separate feedback RF chain for parameter estimation
-
登录查看剩余8件设备及参数对照表
查看全部