Core Viewpoint - The article emphasizes the importance of computing power as a new type of productivity that integrates information computing power, network carrying capacity, and data storage capacity, driving the transformation of urban development in the digital economy era [1][4]. Group 1: Development of 1ms Urban Computing Network - The 1ms urban computing network aims to achieve efficient collaboration and low-latency transmission of computing resources within cities, with a target latency of no more than 1ms between important computing infrastructure in urban areas [1][2]. - Zhejiang Province has established a 1ms low-latency circle, with the construction of a comprehensive 1ms optical network that covers a population of 20 million, doubling its coverage area [2][4]. - The network includes 1.6 million 10G-PON ports and has achieved gigabit fiber coverage for over 100 million households [4]. Group 2: Role of Telecom Operators - Major telecom operators, including China Mobile, China Telecom, and China Unicom, play a crucial role in the construction of the 1ms urban computing network [4][5]. - China Mobile has built a province-wide F5G-A 1ms optical intelligent computing network, achieving full coverage across 90 counties and creating a "highway" for data and computing power transmission [5]. - China Telecom has developed a hierarchical computing network architecture that achieves 1ms latency within cities and 3ms latency across the province [5]. Group 3: Industrial Empowerment through Computing Power - The China (Hangzhou) Computing Power Town focuses on developing a complete industrial ecosystem centered around computing power, particularly in integrated circuit design, high-end software, and intelligent hardware [7]. - The Zhejiang computing power monitoring and perception platform integrates resources from various providers, forming a computing resource pool of 3000P, which supports AI applications and enhances industrial development [7][8]. - Companies like Leap Motor utilize the 1ms urban computing network to achieve real-time data transmission for high-precision simulations and AI model training, significantly reducing vehicle design iteration cycles from 60 months to 24 months [10][11]. Group 4: Future Challenges and Recommendations - Despite the rapid growth of the computing power industry, challenges remain in building a low-latency, high-reliability, and secure urban computing network [11]. - Recommendations include accelerating the development of computing network infrastructure, promoting the digital transformation of various industries, and fostering open cooperation in the computing power industry to create resource aggregation effects [11].
聚焦新质生产力系列之七:1ms城市算网,算力“高速公路”通车!