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Digital Mitigation of Transmitter-Induced Receiver Desensitization in Carrier Aggregation FDD Transceivers

机译:载波聚合FDD收发器中发射机引起的接收机灵敏度降低的数字缓解

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摘要

Carrier aggregation transmissions in frequency division duplexing devices reduce the duplexing distance between the transmitter (TX) and receiver (RX) bands. As a consequence, the spurious intermodulation distortion products created by the nonlinear RF front-end of the TX may easily extend over to the RX band, potentially causing own RX desensitization. In this paper, we propose an efficient and computationally feasible adaptive digital identification and cancellation technique to mitigate the RX desensitization. We first show that the spurious leakage signal at own RX band depends on an equivalent leakage channel that models the overall signal leakage path including the TX nonlinearities, duplexer filter responses, and RX path. The parameters of the equivalent leakage channel can be efficiently estimated with the least squares or the recursive least squares algorithm, using the actual digital transmit data as a reference, and then used to regenerate and cancel the leakage interference from the received signal. The performance of the proposed technique is evaluated with extensive computer simulations, as well as with practical real-world RF measurements, demonstrating excellent calibration properties with up to 19-dB improvement in singal-to-interference plus noise ratio of the desired received signal.
机译:频分双工设备中的载波聚合传输缩短了发射机(TX)和接收机(RX)频段之间的双工距离。结果,由TX的非线性RF前端产生的寄生互调失真产物可能会轻易扩展到RX频段,从而可能导致自身的RX灵敏度下降。在本文中,我们提出了一种有效且在计算上可行的自适应数字识别和消除技术,以减轻RX脱敏现象。我们首先表明,在自己的RX频带上的杂散泄漏信号取决于等效泄漏通道,该通道对整个信号泄漏路径建模,包括TX非线性,双工器滤波器响应和RX路径。等效泄漏通道的参数可以使用最小二乘或递归最小二乘算法,以实际的数字传输数据作为参考,进行有效估计,然后用于从接收信号中重新生成和消除泄漏干扰。通过广泛的计算机仿真以及实际的实际RF测量来评估所提出技术的性能,从而证明其具有出色的校准特性,并在所需接收信号的单干扰和噪声比方面提高了19dB。

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