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Calibration techniques of multi-channel transceiver using noninterfering calibration signals for CDMA smart antenna systems

机译:CDMA智能天线系统中使用无干扰校准信号的多通道收发器校准技术

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A new calibration algorithm has been proposed to correct multi-channel RF transceiver gain/phase errors for CDMA smart antenna systems. We present the structure of a multi-channel RF transceiver with digital calibration apparatus and calibration techniques. The proposed RF transceiver calibration scheme is to minimize interference of the calibration signal to the user signals using weighted and noninterfering calibration signals. The calibration signal is injected into the multi-channel transceiver through a calibration signal injector whose array response vector is controlled to have a low correlation with the antenna response vector of the received signals. The results of computer simulation verify the calibration algorithms. Also, the simulation results describe the effect of the bit error rate of the received signal, including the proposed calibration signals, in a WCDMA FDD reverse link.
机译:已经提出了一种新的校准算法来校正CDMA智能天线系统的多通道RF收发器增益/相位误差。我们介绍了具有数字校准设备和校准技术的多通道RF收发器的结构。所提出的RF收发器校准方案是使用加权且无干扰的校准信号来最小化校准信号对用户信号的干扰。校准信号通过校准信号注入器注入到多通道收发器中,该校准器的阵列响应向量被控制为与接收信号的天线响应向量具有低相关性。计算机仿真的结果验证了校准算法。此外,仿真结果还描述了WCDMA FDD反向链路中接收信号(包括建议的校准信号)的误码率的影响。

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