男女羞羞视频在线观看,国产精品黄色免费,麻豆91在线视频,美女被羞羞免费软件下载,国产的一级片,亚洲熟色妇,天天操夜夜摸,一区二区三区在线电影
Global EditionASIA 中文雙語Fran?ais
Business
Home / Business / Technology

Huawei, NTT Docomo achieve breakthrough in 5G field trial

By Edith Mutethya | chinadaily.com.cn | Updated: 2017-12-20 10:39
Share
Share - WeChat
A worker adjusts the logo at the stand of Huawei at the CeBIT trade fair in Hanover, March 15, 2015.[Photo/Agencies]

Huawei, a Chinese telecommunications giant, and NTT Docomo Inc, Japan's largest telecommunications company, have successfully completed a joint field trial for 5G mobile communications over a long distance with 39 GHz Millimeter Wave (mmWave) band in Yokohama, one of the largest commercial areas in Japan.

In the trial, the downlink data transmissions were recorded at a maximum speed of over 2 Gbps on a testing vehicle equipped with a user equipment (UE), equivalent to a mobile phone, while driving at over 20 kilometers per hour.

This successful trial opens up a new door for applications and deployments of 5G mmWave.

Long-distance mobility transmission over 5GmmWave is one of the enabling technologies to realize 5G enhanced Mobile Broadband (eMBB) and ubiquitous connectivity of massive data rate while fully leveraging the current macro-cellular sites investment by operators.

Takehiro Nakamura, the vice-president and managing director of 5G Laboratory at NTT DOCOMO said, long-distance transmission over 39GHzmmWave will enable 5G network deployments on a large scale.

"It opens up the new stage of the 39GHz mmWave technology and will deliver the ultra-fast experience with 5G high data speed," he said.

Wen Tong, Huawei fellow and CTO of Huawei Wireless Networks, said it's a technological challenge and opportunity to use the long-distance transmission of 5G mmWave Mobile Communications technology.

The wireless industry, he said will start using the new spectrum 100 times broader than current network to foster next wave of innovations.

"The 5G mmWave technology will help our customers to reuse the existing network infrastructure, especially for sites resource, to protect their investment. Huawei will continue to innovate to make 5G mmWave a success," Wen said.

Achieving wide area coverage and mobility performance on 5G mmWave is still a technological challenge for 5G industry. High propagation loss of mmWave signals limits its coverage, while narrow directional beam required to focus the transmission power makes the mmWave beam to track the mobile device, becoming more difficult.

The joint field trial conduced in November 2017 successfully demonstrated that 39GHz mmWave can be used for the long-distance transmission in both stationary and mobility scenarios even in urban complex deployment environments.

The partners recorded over 3 Gbps downlink throughput on the stationary user equipment (UE) at a distance of 1.5 km and over 2 Gbps at a distance of 1.8 km on 39GHz mmWave.

The trial has validated and proved the effectiveness of two companies' mmWave technologies to provide range of 5G services which require wide area coverage.

The test system was made up of one base station on Yokohama Media Tower that works on the 39GHz band and an UE on a testing vehicle.

This trial boasted the innovative materials based compact focal lens antenna with advanced beam forming (maximum gain of 31 dBi) technique to concentrate the radio waves in a certain direction to enable long-distance transmission.

The advanced beam tracking technique is employed to trackUE on a testing vehicle travelling at speeds of over 20 km per hour. This is the industry-first filed trial to verify the long-distance mmWave transmission for mobility application in macro-cell coverage scenarios.

The invented mmWave beam processing algorithms are used to allow the best beam selection, fast beam tracking, and fast beam switching for the best performance for mobile terminal. Moving at about 25 km per hour, the terminal user experienced the high-speed transmission and stable throughput.

Huawei and Docomo jointly worked on the 5G innovation and successfully conducted a series of large-scale field trials since December 2014. Currently, the developments of 5G have entered a new era, with the first version of 3GPP 5G standard of Release-15 expected to be completed in 2018. The industry is thus entering the 5G pre-commercial stage.

"Huawei will continue to work on research and development of mobile communications technologies in cooperation with partners around the world to offer new services that utilize 5G in diverse scenarios for 2020 and beyond," Wen said.

Top
BACK TO THE TOP
English
Copyright 1995 - . 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
CLOSE
 
主站蜘蛛池模板: 南汇区| 永顺县| 高邮市| 定州市| 绥阳县| 汶川县| 白城市| 富民县| 福建省| 蓝山县| 镇远县| 正宁县| 铁岭县| 巢湖市| 亳州市| 巴里| 东源县| 水富县| 合肥市| 隆安县| 海兴县| 德保县| 嘉荫县| 蓝田县| 抚州市| 遂川县| 韶山市| 原平市| 灌阳县| 博白县| 阳春市| 福海县| 姜堰市| 天台县| 金门县| 宁波市| 土默特右旗| 崇信县| 怀安县| 柞水县| 堆龙德庆县| 虎林市| 富民县| 衢州市| 鄂温| 青神县| 洪江市| 洪洞县| 含山县| 澳门| 平泉县| 衡水市| 溧水县| 吉首市| 江安县| 洛浦县| 台州市| 宝应县| 金湖县| 清原| 贵德县| 满洲里市| 寿阳县| 元氏县| 双柏县| 金溪县| 棋牌| 随州市| 龙江县| 镇安县| 石门县| 社会| 博罗县| 磴口县| 安义县| 富民县| 清镇市| 大洼县| 慈溪市| 中超| 富平县| 尼勒克县|