太阳城集团国际娱乐城-菲律宾澳门太阳城集团骰宝_百家乐影院_sp全讯网新2 (中国)·官方网站

搜索

【China Daily】Reshape AI education to boost development

2025.03.12 瀏覽量:

This year's Government Work Report has proposed the continued advancement of the "AI plus "initiative, so as to better integrate digital technology with manufacturing and market advantages. The rapid development of artificial intelligence technology is reshaping the global competitive landscape.

In the era of AI, traditional disciplinary boundaries are rapidly dissolving, making multi — and inter-disciplinary talent cultivation crucial. For example, Massachusetts Institute of Technology's "new engineering education transformation" program and Stanford University's "human-centered AI "initiative focus on restructuring talent development frameworks. China, too, is advancing comprehensive higher education reforms in line with the "AI plus" strategy across various industries to build a uniquely Chinese AI academic system.

Chongqing University has, in recent years, deepened new engineering education reforms, lifting the barriers between disciplines to integrate AI into traditional engineering fields such as mechanical, electrical, civil, materials and energy engineering. It has introduced courses such as "Fundamentals of AI" to strengthen students' mathematical foundation, and incorporated machine-learning into specialized subjects.

Although China has made significant progress in AI applications, there are still gaps in core areas such as fundamental algorithms and high-end chips. Overcoming these challenges requires activating endogenous innovation through systemic reforms. Hence, a "scenario-driven basic research support mechanism" should be established, turning common challenges facing smart city development, intelligent manufacturing, and smart healthcare into fundamental research problems in order to form a dual-cycle system of "demand-driven research" and "theory-driven application".

To achieve this, universities should collaborate with leading enterprises to conduct organized scientific research to clear "bottlenecks" hindering the development of technologies such as AI chips and autonomous driving algorithms. The model of deep industry-academia-research collaboration will ensure universities, as key drivers of fundamental research, uphold academic integrity and respect research principles.

For example, DeepSeek fosters an opensource ecosystem where global developers collaborate, accelerating technological iterations and lowering R&D barriers. The Chongqing University has introduced a fully integrated DeepSeek system, focusing on six key management objectives: scale, development, efficiency, effectiveness, quality, and risk control.

The Chongqing University is collaborating with companies such as Changan Auto and Seres to develop smart cockpits and "vehicle-road-cloud" coordination platforms. By thoroughly analyzing manufacturing mechanisms and integrating production data with physical models, the university is providing intelligent solutions that combine generality with industry specificity, accelerating the development and digital transformation of the new energy vehicle industry.

More strategically, the university is spearheading the Jialing River Laboratory, which focuses on "Digital Intelligence plus Equipment" and serves as a high-level research platform for concept verification and R&D testing. By integrating innovation chains, industrial chains, financial chains and talent chains, the lab aims to clear cross-disciplinary innovation bottlenecks, reduce the R&D cycle, and enhance testing capabilities. This holistic approach connects the entire research ecosystem.

To drive the real economy forward, universities should act both as accelerators of industrial upgrading and anchors for fundamental research, helping industries climb the global value chain. But the ecosystem development faces challenges, with the biggest being overcoming technological monopolies and industry barriers.

Take NVIDIA's CUDA ecosystem for example. Its strength lies not only in hardware performance but also in the maturity of its software tool chain. To break such barriers, China should accelerate the development of self-sufficient software tool chains and critical datasets in specialized applications, creating a full-stack AI ecosystem encompassing foundational hardware, core algorithms and application data.

Furthermore, Chinese universities should participate in global AI governance with a more inclusive mindset, integrating Eastern wisdom into the development of AI ethics and standards, and contributing Chinese solutions to address global problems. By fostering a diverse and inclusive regulatory framework, China can play a pivotal role in shaping AI's impact on societies.

百家乐投注规则| 百家乐官网乐翻天| 易发国际娱乐城| 阴宅24层手机罗盘| 大发888娱乐场大发888娱乐场下载| 百家乐官网波音平台导航网| 百家乐蓝盾在线现| 半圆百家乐官网桌布| 扑克百家乐麻将筹码防伪| 澳门百家乐官网真人娱乐场| 金彩百家乐的玩法技巧和规则| 金域百家乐官网娱乐城| 网络百家乐破| 如何胜百家乐官网的玩法技巧和规则 | 大发888娱乐城官方下载lm0| 黄金城百家乐官网苹果版| 伟博娱乐| 百家乐庄家闲| 三国百家乐官网的玩法技巧和规则 | 百家乐官网赌博大全| 大发888官方删除| 百家乐真人投注网站| 澳门百家乐官网官方网址| 百家乐游戏打水| 温州市百家乐官网鞋业有限公司| bet365.com| 百家乐牌路图表下| 至尊百家乐官网娱乐场开户注册| 新澳博娱乐| 大发888娱乐场下载最高| 百家乐输了100万| 网上百家乐官网大转轮| 东莞市| 百家乐官网论坛百科| 棋牌游戏平台开发| 百家乐稳赢技法| 百家乐官网导航| 88百家乐官网现金网| 大发888官方网站登录| 墨尔本百家乐官网的玩法技巧和规则| 大玩家百家乐官网现金网|