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Hybrid Analog-Digital Transceiver Designs for Multi-User MIMO mmWave Cognitive Radio Systems

机译:用于多用户MMWAVE认知无线电系统的混合模数收发器设计

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Millimeter wave (mmWave) band mobile communications can be a solution to the continuously increasing traffic demand in modern wireless systems. Even though mmWave bands are scarcely occupied, the design of a prospect transceiver should guarantee the efficient coexistence with the incumbent services in these bands. To that end, in this paper, multi-user underlay cognitive transceiver designs are proposed that enable the mmWave spectrum access while controlling the interference to the incumbent users. MmWave systems usually require large-scale antenna arrays to achieve satisfactory performance and thus, it is difficult to support fully digital transceiver designs due to high demands in hardware complexity and power consumption. Thus, in order to develop efficient solutions, the proposed approaches are based on a hybrid analog-digital (A/D) architecture. Transceiver designs are developed for both the uplink and the downlink regime of a multi-user cellular system. Efficient algorithmic solutions are proposed for the design of the analog and the digital counterparts of the precoding and the decoding matrices of the latter systems based on the Alternating Direction Method of Multipliers (ADMM). Simulations show that the performance of the proposed hybrid A/D approaches is very close to the one of the corresponding fully digital transceivers for typical experimental setups.
机译:毫米波(MMWAVE)频段移动通信可以是在现代无线系统中不断增加交通需求的解决方案。即使MMWave乐队几乎没有占用,潜在客户收发器的设计也应保证与这些乐队中的现任服务共存有效共存。为此,提出了多用户底层认知收发器设计,使MMWAVE频谱访问能够控制对现有用户的干扰。 MMWAVE系统通常需要大规模的天线阵列来实现令人满意的性能,因此,由于硬件复杂性和功耗的高要求,难以支持全数字收发器设计。因此,为了开发有效的解决方案,所提出的方法基于混合模数 - 数字(A / D)架构。为多用户蜂窝系统的上行链路和下行链路制度开发收发器设计。基于乘法器(ADMM)的交替方向方法,提出了高效的算法解决方案的设计的模拟和数字对应物的设计和后一种系统的解码矩阵。模拟表明,提出的混合A / D方法的性能非常接近典型实验设置的相应全数字收发器之一。

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