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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >Novel Modeling and Calibration Approach for Multiport Receivers Mitigating System Imperfections and Hardware Impairments
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Novel Modeling and Calibration Approach for Multiport Receivers Mitigating System Imperfections and Hardware Impairments

机译:用于多端口接收器的新型建模和校准方法,可缓解系统缺陷和硬件缺陷

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Factors limiting and degrading the performance of a multiport-based receiver system for wideband signals are modeled and a suitable calibration approach is proposed in this paper. The proposed calibration approach uses a new model for linearization of diode power detectors suitable for wideband real (modulated) wireless signals. To verify the proposed model and calibration procedure, a 2–18-GHz wideband six-port-based receiver system is set up and its performance is verified using wireless signals having different bandwidth and modulation schemes. The new calibration algorithm improved the error vector magnitude (EVM) of the receiver system from 7.9% to 1.6% for a 64-QAM signal with a bandwidth of 2 MHz and a data rate of 12 Mb/s. To show the usefulness of the model for real communication signals, wideband code division multiple access (WCDMA) and wireless local area network (WLAN) signals are received and EVM of 4.7% and 3.4% are reported for the WCDMA and the WLAN signals, respectively.
机译:对限制和降低基于多端口的宽带信号接收机系统性能的因素进行了建模,并提出了一种合适的校准方法。提出的校准方法使用了一种新模型,用于对适用于宽带真实(调制)无线信号的二极管功率检测器进行线性化。为了验证所提出的模型和校准程序,建立了一个基于2-18 GHz宽带六端口的接收机系统,并使用具有不同带宽和调制方案的无线信号来验证其性能。对于带宽为2 MHz,数据速率为12 Mb / s的64-QAM信号,新的校准算法将接收器系统的误差矢量幅度(EVM)从7.9%提高到1.6%。为了显示该模型对实际通信信号的实用性,接收了宽带码分多址(WCDMA)和无线局域网(WLAN)信号,并分别报告了WCDMA和WLAN信号的EVM分别为4.7%和3.4% 。

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