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Low-complexity soft-output signal detector based on adaptive pre-conditioned gradient descent method for uplink multiuser massive MIMO systems
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作者 Souleymane Berthe xiaorong jing +1 位作者 Hongqing Liu Qianbin Chen 《Digital Communications and Networks》 SCIE CSCD 2023年第2期557-566,共10页
In multiuser massive Multiple Input Multiple Output(MIMO)systems,a large amount of antennas are deployed at the Base Station(BS).In this case,the Minimum Mean Square Error(MMSE)detector with soft-output can achieve th... In multiuser massive Multiple Input Multiple Output(MIMO)systems,a large amount of antennas are deployed at the Base Station(BS).In this case,the Minimum Mean Square Error(MMSE)detector with soft-output can achieve the near-optimal performance at the cost of a large-scale matrix inversion operation.The optimization algorithms such as Gradient Descent(GD)method have received a lot of attention to realize the MMSE detection efficiently without a large scale matrix inversion operation.However,they converge slowly when the condition number of the MMSE filtering matrix(the coefficient matrix)increases,which can compromise the efficiency of their implementation.Moreover,their soft information computation also involves a large-scale matrix-matrix multiplication operation.In this paper,a low-complexity soft-output signal detector based on Adaptive Pre-conditioned Gradient Descent(APGD-SOD)method is proposed to realize the MMSE detection with soft-output for uplink multiuser massive MIMO systems.In the proposed detector,an Adaptive Pre-conditioner(AP)matrix obtained through the Quasi-Newton Symmetric Rank One(QN-SR1)update in each iteration is used to accelerate the convergence of the GD method.The QN-SR1 update supports the intuitive notion that for the quadractic problem one should strive to make the pre-conditioner matrix close to the inverse of the coefficient matrix,since then the condition number would be close to unity and the convergence would be rapid.By expanding the signal model of the massive MIMO system and exploiting the channel hardening property of massive MIMO systems,the computational complexity of the soft information is simplified.The proposed AP matrix is applied to the GD method as a showcase.However,it also can be used by Conjugate Gradient(CG)method due to its generality.It is demonstrated that the proposed detector is robust and its convergence rate is superlinear.Simulation results show that the proposed detector converges at most four iterations.Simulation results also show that the proposed approach achieves a better trade-off between the complexity and the performance than several existing detectors and achieves a near-optimal performance of the MMSE detector with soft-output at four iterations without a complicated large scale matrix inversion operation,which entails a big challenge for the efficient implementation. 展开更多
关键词 Multiuser massive MIMO MMSE algorithm GD Method Soft-output PRE-CONDITIONING Symmetric rank one update
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下行NOMA-HetNet中联合干扰对齐与功率分配的干扰管理方案
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作者 景小荣 陈怡西 +1 位作者 高维 陈前斌 《中国科学:信息科学》 CSCD 北大核心 2023年第2期365-386,共22页
在基于马特恩簇过程的下行非正交多址接入型异构网(non-orthogonal multiple access heterogeneous network,NOMA-HetNet)中,针对典型宏小区中不同干扰类型,提出一种联合干扰对齐(interference alignment,IA)与功率分配(power allocatio... 在基于马特恩簇过程的下行非正交多址接入型异构网(non-orthogonal multiple access heterogeneous network,NOMA-HetNet)中,针对典型宏小区中不同干扰类型,提出一种联合干扰对齐(interference alignment,IA)与功率分配(power allocation,PA)的干扰管理方案.在该方案中,在分析IA可行性的基础上,通过设计基于干扰信道对齐的两阶段式IA算法、微基站(small base station,SBS)预编码矢量和宏用户(macro user,MUE)检测矢量,来分别消除宏基站(macro base station,MBS)对微用户(small user,SUE)的层间干扰、SBS对SUE的簇间干扰和SBS对MUE的层间干扰.同时,为抑制簇内干扰,以最大化系统和速率为目标,构建一基于PA的非凸优化问题,并通过对非线性最小速率约束条件线性化处理,将原问题转化为凸优化问题,进而利用卡罗需–库恩–塔克(Karush-Kuhn-Tucker)最优性条件,从理论上推导出该问题的最优闭式解.仿真结果验证了所提干扰管理方案的有效性. 展开更多
关键词 非正交多址接入型异构网 干扰管理 干扰对齐 功率分配 凸优化
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