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Shanghai sets sight on leading 6G breakthroughs, global data hub construction_我的网站

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一 |     (ECNS) -- Shanghai is accelerating its digital transformation under a new blueprint for the 15th Five-Year Plan period (2026-2030), with a focus on breakthroughs in 6G technology and next-generation digital infrastructure. The city plans to advance the commercial deployment of 6G and develop intelligent experimental networks. It will also expand 5G-A coverage across a wide range of scenarios and strengthen links with the "Thousand Sails Constellation" satellite internet project.    Beyond communications infrastructure, Shanghai aims to develop into a leading international data processing hub. The city plans to build advanced data centers in key areas including Lingang and Hongqiao, while facilitating cross-border data flows through a more practical negative-list system. The measures are intended to make international data exchanges more secure and efficient for multinational companies and other global businesses.    The plan also places greater emphasis on high-performance computing, including the integration of AI computing and supercomputing resources into a unified service platform. At the same time, Shanghai will deepen digital cooperation with Singapore and BRICS countries, further strengthening its role as a gateway connecting China with the global digital economy.    The strategy underscores China's push to lead the development of next-generation technologies while expanding international cooperation in the digital sector.    (By Intern Lin Qiaochu, Zhang Dongfang)                    。    最初,Geotail配备了两个数据记录器来收集任务的科学数据。2012年,在任务已经花了20年时间收集有关地球周围等离子体环境的信息后,一个数据记录器出现故障。剩下的一个数据记录器又继续收集了10年的数据,直到2022年6月28日它出现了异常。JAXA的团队发现了该记录器的错误。他们一直在进行测试,调查损坏的原因和程度。到目前为止,正在进行的恢复记录器的尝试并不成功。没有一个正常的记录器,美国仪器的科学数据就不能再被收集或下载。鉴于这次失败,NASA、ISAS和JAXA目前正在决定该任务的最佳发展道路。

二 | Geotail于1992年7月24日从佛罗里达州的卡纳维拉尔角空军基地发射,其主要目标是使用一套全面的科学仪器研究地球磁层尾部区域的结构和动力学。磁层是地球周围受地球磁场控制的空间区域。

三 | 通过拉长的轨道,Geotail在过去30年里一直在磁层的无形边界中航行,收集有关那里的物理过程的数据。

四 | Geotail取得了许多科学突破,包括帮助科学家更好地了解是什么导致来自太阳的物质进入磁层。它还取得了其预期范围之外的发现,如识别月球大气中的氧气、硅、钠和铝等。

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Published on:18:15:22