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1. 中国铁塔股份有限公司河北省分公司,河北 石家庄 050021
2. 中国信息通信研究院,北京 100191
3. 广州杰赛通信规划设计院有限公司,广东 广州 510310
[ "蒋素霞(1970- ),女,中国铁塔股份有限公司河北省分公司铁塔技术支撑中心副总经理、高级工程师,主要从事通信网络规划、建设等技术研究工作" ]
[ "周熙(1995- ),女,中国信息通信研究院规划所创新与运营研究部创新创业研究员,主要从事信息通信行业战略规划项目、相关课题研究等工作" ]
[ "黄星辉(1985- ),男,广州杰赛通信规划设计院有限公司华中地区部副总经理、高级工程师,主要从事信息通信网络规划、设计等工作" ]
网络出版日期:2020-10,
纸质出版日期:2020-10-20
移动端阅览
蒋素霞, 周熙, 黄星辉. 基于冬奥会高话务需求下山地区域通信基站规划方案[J]. 电信科学, 2020,36(10):140-146.
Suxia JIANG, Xi ZHOU, Xinghui HUANG. Regional communication base station planning scheme based on high traffic demand of Winter Olympic Games[J]. Telecommunications science, 2020, 36(10): 140-146.
蒋素霞, 周熙, 黄星辉. 基于冬奥会高话务需求下山地区域通信基站规划方案[J]. 电信科学, 2020,36(10):140-146. DOI: 10.11959/j.issn.1000-0801.2020280.
Suxia JIANG, Xi ZHOU, Xinghui HUANG. Regional communication base station planning scheme based on high traffic demand of Winter Olympic Games[J]. Telecommunications science, 2020, 36(10): 140-146. DOI: 10.11959/j.issn.1000-0801.2020280.
山地区域基站规划和建设,尤其是高话务需求场景下,是通信工程中的难点。以北京2022年冬奥会和冬残奥会张家口崇礼赛区公众移动通信网络规划为例,针对崇礼赛区所处的山区特有的地形地貌,在满足赛事高密度人群、瞬间大话务量需求下,通过对需求问题的深入研究,提出一套行之有效的研究方法,统筹开展 2G、4G、5G 基站规划,规划一张高速、移动、安全、泛在的冬奥移动通信服务网络,为实施山地 5G高话务量移动通信网络规划提供有益的参考。
Mountain area base station planning and construction
especially in high traffic demand scenarios
always has been a challenge in communication engineering.Taking the public mobile communication network planning of Beijing 2022 Winter Olympic Games and Winter Paralympics Chongli Zhangjiakou Competition area as an example
where the terrain is mostly mountainous and the scenario is characterized of high density crowds and instantly increasing demand of telephone traffic
an effective method of 2G/4G/5G bast-station planning was proposed
aiming at a high-speed
safe and widespread mobile communication service network for the Winter Olympics.A references was provided for the implementation of the 5G high telephone traffic mobile communication network planning in the mountain area .
潘毅 , 李晖晖 , 曾磊 , 等 . 5G 室内场景多通道联合收发技术性能与关键问题 [J ] . 电信科学 , 2020 , 36 ( 7 ): 168 - 174 .
PAN Y , LI H H , ZENG L , et al . Performance and key issues of 5G multi-channel joint transceiver technology [J ] . Telecommu-nications Science , 2020 , 36 ( 7 ): 168 - 174 .
李青 . 5G组网方案研究 [J ] . 电信科学 , 2020 , 36 ( 5 ): 125 - 137 .
LI Q . Study on 5G networking scheme [J ] . Telecommunications Science , 2020 , 36 ( 5 ): 125 - 137 .
周俊 , 权笑 , 马建辉 . 5G无线优化面临的挑战及应对策略 [J ] . 电信科学 , 2020 , 36 ( 1 ): 58 - 65 .
ZHOU J , QUAN X , MA J H . Challenge and strategy of 5G radio optimization [J ] . Telecommunications Science , 2020 , 36 ( 1 ): 58 - 65 .
李泽捷 , 曹磊 . 5G 网络规划与测试指标研究 [J ] . 信息通信技术与政策 , 2020 ( 6 ): 73 - 79 .
LI Z J , CAO L . Research on 5G network planning and testing indicators [J ] . Information and Communications Technology and Policy , 2020 ( 6 ): 73 - 79 .
张振 , 张英孔 , 王二军 . 5G 移动通信室内覆盖解决方案研究 [J ] . 电信工程技术与标准化 , 2019 , 32 ( 10 ): 5 - 9 .
ZHANG Z , ZHANG Y K , WANG R J . Research on solution of 5G mobile communication indoor coverage [J ] . Telecom Engi-neering Technics and Standardization , 2019 , 32 ( 10 ): 5 - 9 .
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