Multi-Band All-Digital Transmission for 5G NG-RAN Communication

Nishant Kumar, K. Rawat, F. Ghannouchi
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引用次数: 2

Abstract

This paper explores multi-band all-digital transmitter architecture suitable for 5G next-generation radio access network (NG-RAN). In NG-RAN, most of the radio frequency (RF) layer functions are moved to a distributed unit (DU) in the digital domain so that a low cost and small size remote radio unit (RRU) can be developed. This paper presents a delta-sigma modulation (DSM) technique implemented in the field-programmable gate array (FPGA) for DU which is further interfaced with a power amplifier in RRU through feeder cable. A single bit 1st and $2^{\mathrm{n}\mathrm{d}}$ order low-pass DSM is implemented in FPGA of DU. An IQ sequencing block and high-speed serializer multiplexer are used to digitally up-convert the baseband signals to the different carrier frequencies in DU. The proposed scheme is validated with transmission of long-term evolution (LTE) signal of 5 MHz bandwidth for single as well as multi-band operation. The performance of the transmitter is measured in terms of signal to noise distortion ratio (SNDR) and error vector magnitude (EVM).
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5G NG-RAN通信的多频段全数字传输
本文探索了适用于5G下一代无线接入网(NG-RAN)的多频段全数字发射机架构。在NG-RAN中,将射频层的大部分功能转移到数字域的分布式单元(DU)上,从而开发出低成本、小尺寸的远程无线电单元(RRU)。本文提出了一种在现场可编程门阵列(FPGA)中实现的delta-sigma调制(DSM)技术,该技术通过馈线电缆与RRU中的功率放大器进行接口。在DU的FPGA上实现了1位和$2^{\mathrm{n}\mathrm{d}}$阶低通DSM。采用IQ序列模块和高速串行多路复用器将基带信号数字上转换为DU中的不同载波频率。通过5mhz带宽的LTE信号传输,对该方案进行了单频段和多频段的验证。用信噪比(SNDR)和误差矢量幅度(EVM)来衡量发射机的性能。
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