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Non-Orthogonal Multiple Access With Improper Gaussian Signaling

机译:非正交多次访问不正确的高斯信令

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Improper Gaussian signaling (IGS) helps to improve the throughput of a wireless communication network by taking advantage of the additional degrees of freedom in signal processing at the transmitter. This paper exploits IGS in a general multiuser multi-cell network, which is subject to both intra-cell and inter-cell interference. With IGS under orthogonal multiple access (OMA) or non-orthogonal multiple access (NOMA), designs of transmit beamforming to maximize the users' minimum throughput subject to transmit power constraints are addressed. Such designs are mathematically formulated as nonconvex optimization problems of structured matrix variables, which cannot be solved by popular techniques such as weighted minimum mean square error or convex relaxation. By exploiting the lowest computational complexity of 2 x 2 linear matrix inequalities, lower concave approximations are developed for throughput functions, which are the main ingredients for devising efficient algorithms for finding solution of these difficult optimization problems. Numerical results obtained under practical scenarios reveal that there is an almost two-fold gain in the throughput by employing IGS instead of the conventional proper Gaussian signaling under both OMA and NOMA; and NOMA-IGS offers better throughput compared to that achieved by OMA-IGS.
机译:不正确的高斯信令(IGS)有助于通过利用发送器处的信号处理中的额外自由度来提高无线通信网络的吞吐量。本文利用一般多用户多单元网络中的IGS,该网络受到细胞内和小区间干扰。在正交多访问(OMA)下的IGS或非正交多访问(NOMA),发送波束成形的设计,以最大化用户的最小吞吐量,以进行发送功率约束。这种设计在数学上配制成结构化矩阵变量的非透露优化问题,其无法通过诸如加权最小均方误差或凸松弛的流行技术来解决。通过利用2×2的最低计算复杂性,为吞吐量开发了较低的凹形近似,这是用于设计有效算法的主要成分,用于寻找这些难度优化问题的解决方案。在实际情况下获得的数值结果表明,通过在OMA和NOMA下采用IGS而不是传统的适当高斯信号传播,吞吐量几乎有两倍的增益;与OMA-IGS实现相比,NOMA-IGS提供了更好的吞吐量。

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