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Optimal Power Allocation of GFDM Secondary Links With Power Amplifier Nonlinearity and ACI

机译:具有功率放大器非线性和ACI的GFDM辅助链路的最优功率分配

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We investigate the problem of the rate maximization of a generalized frequency division multiplexing (GFDM) based secondary user (SU) link operating over a spectrum hole where adjacent channel interference (ACI) on two active primary users (PUs) in the right and left adjacent channels must be below a threshold. The SU transmitter has nonlinear power amplifier (PA) distortions. We consider a zero forcing (ZF) receiver which removes self-generated interference of GFDM. For a third-order nonlinear PA, we derive the signal-to-interference-plus noise ratio (SINR) and ACI. By using successive convex approximations, we develop a power allocation algorithm to maximize the SU rate subject to the ACI limits on adjacent PUs. Finally, we show that the proposed algorithm improves the SU data rate and that GFDM achieves a higher SU data rate than orthogonal frequency division multiplexing (OFDM).
机译:我们研究在频谱孔上运行的基于广义频分复用(GFDM)的辅助用户(SU)链路的速率最大化问题,其中左右两个相邻的两个活动主要用户(PU)上的相邻信道干扰(ACI)通道必须低于阈值。 SU发送器具有非线性功率放大器(PA)失真。我们考虑一个零强迫(ZF)接收器,该接收器可以消除GFDM的自生干扰。对于三阶非线性PA,我们推导了信号干扰加噪声比(SINR)和ACI。通过使用连续凸逼近,我们开发了一种功率分配算法,可在相邻PU上受ACI限制的情况下最大化SU速率。最后,我们证明了所提出的算法提高了SU数据速率,并且GFDM实现了比正交频分复用(OFDM)更高的SU数据速率。

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