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Digital self-interference cancellation in inter-band carrier aggregation transceivers: Algorithm and digital implementation perspectives

机译:带间载波聚合收发器中的数字自干扰消除:算法和数字实现观点

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In this paper we study and analyze the problem of self-interference in transceivers performing inter-band carrier aggregation, where separate power amplifiers (PAs) are used for each component carrier (CC). The self-interference stems from the nonlinear behaviour of the passive RF components at the transmitter, which results in passive intermodulation terms that in some cases fall onto the RX band. Moreover, also the individual PAs distort the CCs in a nonlinear fashion, which means that the self-interference is in fact produced by a cascade of two nonlinearities. This is something that has largely been ignored in earlier literature. Hence, in this work, a signal model is derived that considers both the nonlinearity of the PAs and the passive components, resulting in a highly efficient digital cancellation solution. Using realistic waveform simulations, it is shown to outperform the existing digital cancellers that neglect the PA-induced nonlinear distortion. Also the computational complexity of the proposed digital canceller is analyzed in detail. All in all, the findings indicate that the developed digital cancellation solution is a feasible option for improving the receiver sensitivity of mobile devices utilizing inter-band carrier aggregation.
机译:在本文中,我们研究和分析了执行带间载波聚合的收发器中的自干扰问题,其中,每个分量载波(CC)使用单独的功率放大器(PA)。自干扰源于发射器上无源RF组件的非线性行为,这会导致无源互调项,在某些情况下会落入RX频带。此外,各个PA也会以非线性方式使CC失真,这意味着自干扰实际上是由两个非线性级联产生的。在以前的文献中,这是很大程度上被忽略的东西。因此,在这项工作中,得出了一个信号模型,该模型同时考虑了PA和无源组件的非线性,从而产生了一种高效的数字消除解决方案。使用真实的波形仿真,它表现出优于忽略了PA引起的非线性失真的现有数字抵消器。还详细分析了所提出的数字消除器的计算复杂度。总而言之,这些发现表明,所开发的数字消除解决方案对于提高利用带间载波聚合的移动设备的接收机灵敏度是可行的选择。

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