国产热热热精品,亚洲视频久久】日韩,三级婷婷在线久久,99人妻精品视频,精品九热人人肉肉在线,AV东京热一区二区,91po在线视频观看,久久激情宗合,青青草黄色手机视频

Global EditionASIA 中文雙語Fran?ais
China
Home / China / Innovation

Chinese scientists make breakthrough in optical communication, 6G technology

Xinhua | Updated: 2026-02-20 19:52
Share
Share - WeChat

BEIJING -- A Chinese research team has developed an integrated communication system bridging optical fiber and wireless networks, setting a new world record for data transmission speed, according to a study published Thursday in the journal Nature.

The increasing demand for computing power in AI data centers and the development of next-generation 6G wireless networks require high-speed, low-latency signal transmission across diverse scenarios.

However, differences in signal architecture and hardware between optical fiber and wireless communication systems have made it difficult to achieve high-speed, compatible end-to-end transmission between the two systems on the same infrastructure, posing a major challenge for high-speed telecommunications networks.

The research team, comprising Peking University, the Peng Cheng Laboratory, ShanghaiTech University, and the National Optoelectronics Innovation Center, has developed a converged communication system that achieves single-channel signal transmission of 512 Gbps over optical fiber and 400 Gbps over wireless.

According to Wang Xingjun, one of the paper's corresponding authors at Peking University, the new system supports dual-mode transmission via both optical fiber and wireless networks, not only avoiding bandwidth limitations and noise accumulation but also enhancing anti-interference capabilities.

The team also simulated a large-scale 6G user access scenario, demonstrating multichannel real-time 8K video access across 86 channels, achieving a transmission bandwidth more than ten times that of the current 5G standard.

Beyond enabling ultra-large-capacity communication, the system exhibits excellent performance in terms of energy consumption, cost and scalability for large-scale deployment. The system's all-optical architecture enables seamless integration with existing optical networks, fostering deep convergence between mobile access networks and optical fiber networks.

Wang noted that the new system has significant application potential in scenarios such as 6G base stations and wireless data centers and could reshape the architecture of telecommunication systems, laying the foundation for next-generation ultra-broadband, high-speed integrated fiber-wireless communication.

Top
BACK TO THE TOP
English
Copyright 1994 - . All rights reserved. The content (including but not limited to text, photo, multimedia information, etc) published in this site belongs to China Daily Information Co (CDIC). Without written authorization from CDIC, such content shall not be republished or used in any form. Note: Browsers with 1024*768 or higher resolution are suggested for this site.
License for publishing multimedia online 0108263

Registration Number: 130349
FOLLOW US
 
荥阳市| 介休市| 沾益县| 景洪市| 横峰县| 宁晋县| 平远县| 介休市| 大埔县| 无极县| 神农架林区| 祥云县| 延津县| 若羌县| 高密市| 玉门市| 长兴县| 珠海市| 屯门区| 牡丹江市| 开远市| 任丘市| 宝丰县| 庆阳市| 集安市| 舞钢市| 恩平市| 克拉玛依市| 常州市| 衡阳市| 洱源县| 家居| 杭锦旗| 南安市| 襄樊市| 通江县| 马关县| 吉隆县| 靖远县| 台中市| 顺义区|