印尼实现5G前传网络的16-QAM调制光纤无线电系统设计

Nabila Syadzwina Effendi, Y. Natali, C. Apriono
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引用次数: 0

摘要

在5G网络中,云无线接入网(C-RAN)在提升网络性能效率方面发挥着重要作用。然而,这种C-RAN概念的主要挑战在于需要一个前传网络来处理高容量和低延迟。光纤无线电(RoF)是满足5G前传网络要求的高容量和高速传输的解决方案。通过使用光放大器,保持低衰减效果以达到最小误码率是必要的。本文通过考虑放大器放置和16-QAM调制的不同比特率来研究印度尼西亚5G前传网络实现的RoF。光放大器的放置方案有前置放大器和升压放大器。结果表明,升压放大方案可以覆盖最大20 km的前传传输距离。作为比较,前置放大器方案可以达到15公里的传输距离。此外,将比特率从1gbps增加到2.5 Gbps会导致BER值增加。结果表明,不同的光放大器和比特率的增加会影响得到的误码率值,并限制前传网络所能达到的传输距离。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of Radio over Fiber System with 16-QAM Modulation for 5G Fronthaul Network Implementation in Indonesia
In 5G Network, Cloud Radio Access Network (C-RAN) plays a substantial role in escalating network performance efficiency. Nevertheless, this C-RAN concept’s main challenge lies in the need for a fronthaul network to handle high capacity and low delay. The Radio over Fiber (RoF) has been a solution to satisfy the high capacity and high-speed transmission required by the 5G fronthaul network. Keeping the attenuation effect low to achieve the minimum BER by using the optical amplifier is necessary. This paper investigates RoF by considering amplifier placement and different bitrate with 16-QAM modulation for Indonesia’s 5G Fronthaul Network Implementation. Optical amplifier placement scenarios are pre-amplifier and booster amplifier. The results show that the booster amplifier scheme can cover a maximum fronthaul transmission distance of 20 km. As a comparison, the pre-amplifier scheme can reach a transmission distance of up to 15 km. Moreover, increasing the bitrate from 1 Gbps to 2.5 Gbps causes the BER value to increase. This result shows that different optical amplifiers and the increase in bit rate will affect the obtained BER values and limit the transmission distance that the fronthaul network can achieve.
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