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Improved Message Passing Algorithms for Sparse Code Multiple Access

机译:稀疏代码多址访问的改进消息传递算法

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Sparse code multiple access (SCMA) is one of the nonorthogonal multiple access techniques for the 5G system. SCMA can provide different levels of overloading to meet the diverse traffic connectivity requirements. However, its relatively high computational complexity of multiuser detection is still a significant concern for practical implementation, even when the sparse structure has already been employed. In this paper, a design framework for an improved SCMA multiuser detector is proposed based on the message passing algorithm (MPA). As the primary SCMA detector, two aspects of MPA are simplified and optimized. First, we introduce a lookup table (LUT) scheme to reduce the computational complexity of the max* operation in the MPA. In contrast to the extensive Jacobian approximation, the proposed LUT method can guarantee the stable convergence of the MPA for SCMA. Second, a series of novel scheduling schemes are proposed to speed up the convergence. A single scheduling MPA (SS-MPA) method is given to enhance the convergence performance of MPA, where the soft messages in the function nodes and variable nodes are serially calculated and synchronously updated. To further improve the throughput of the MPA, a multiple scheduling MPA (MS-MPA) is proposed. In this method, multiple detectors are used to calculate in parallel and update the node messages by different orders. Since the scheduling strategies of message update are optimized, both the SS-MPA and MS-MPA can converge more quickly than the conventional MPA. Theoretical analyses and simulation results regarding the error performance and convergence properties of the above schemes are included.
机译:稀疏代码多路访问(SCMA)是5G系统的非正交多路访问技术之一。 SCMA可以提供不同级别的过载,以满足各种流量连接需求。然而,即使已经采用了稀疏结构,其相对较高的多用户检测计算复杂度仍是实际实现中的重要问题。本文基于消息传递算法(MPA),提出了一种改进的SCMA多用户检测器设计框架。作为主要的SCMA检测器,MPA的两个方面得到了简化和优化。首先,我们引入了一个查找表(LUT)方案,以降低MPA中max *运算的计算复杂度。与广泛的雅可比近似相反,所提出的LUT方法可以保证SCMA的MPA稳定收敛。其次,提出了一系列新颖的调度方案以加快收敛速度​​。给出了一种单调度MPA(SS-MPA)方法,以增强MPA的收敛性能,在MPA中,功能节点和变量节点中的软消息被串行计算并同步更新。为了进一步提高MPA的吞吐量,提出了一种多调度MPA(MS-MPA)。在这种方法中,多个检测器用于并行计算并以不同顺序更新节点消息。由于优化了消息更新的调度策略,因此与传统的MPA相比,SS-MPA和MS-MPA都可以更快地收敛。包括有关上述方案的错误性能和收敛特性的理论分析和仿真结果。

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