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  • 亚洲威廉
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    亚洲威廉怎么用
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亚洲威廉怎么用电机系

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亚洲威廉怎么用电机系本科生

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亚洲威廉怎么用电机系亚洲威廉怎么用

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On November 23, at the closing ceremony of the Future Science City Energy Valley High-Quality Development Conference and the 2025 Energy Transition Conference in Changping District, Beijing, the Energy-Carbon Monitoring and Management Platform for Future Science City was officially launched. The platform was led by the Administrative Committee of Future Science City, technically supported by the Department of Electrical Engineering at Tsinghua University, and jointly developed by a subsidiary technology company of Future Science City Group and Beijing Xiqing Energy Technology Co., Ltd. Liu Qiang, Member of the Standing Committee and Vice District Mayor of Changping District, Kang Chongqing, Dean of the Department of Electrical Engineering, Director of Tsinghua Energy Internet Innovation Research Institute, and Dean of Tsinghua Sichuan Energy Internet Research Institute, pressed their handprints together to inaugurate the platform.

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The platform is designed to serve the national “dual-carbon” strategy. Relying on the “carbon emission flow theory” and the core algorithms of “electricity-based carbon measurement” and “electricity-based energy measurement” proposed by Tsinghua University’s Department of Electrical Engineering and Tsinghua Sichuan Energy Internet Research Institute, it achieves precise carbon emission perception and scientific management. Domestically, it is the first government-side regional “carbon-meter-terminal-system” application model, focusing on regional green development. It builds a regional energy-carbon monitoring and management system, provides panoramic energy-carbon data visualization and trend insights at a glance, and offers a reliable data foundation for transforming from dual energy control to dual carbon control. It supports government supervision of energy-consuming units’ energy and carbon emissions, assisting Future Science City in achieving its “dual-carbon” targets.

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Amid the national “dual-carbon” strategic wave and at the critical transition between the 14th and 15th Five-Year Plans, the platform serves as a key initiative for Future Science City to implement national “dual-carbon” strategies and the carbon peak implementation plans of Beijing and Changping District. It constructs a four-in-one functional system of “monitoring, management, regulation, and integration.” On the government supervision side, it provides core functions including regional energy-carbon panoramic monitoring, key building energy-carbon profiling, dynamic enterprise carbon tracking, low-carbon project analysis, and strategic evaluation through a “dual-carbon dashboard,” supported by a leadership cockpit display system that enables “panoramic view with one click, insight into the situation with one glance.” On the market entity side, the platform opens standardized data reporting interfaces and intelligent collection interfaces for building operators and enterprise users, effectively breaking data barriers and reducing access costs. After deployment, the platform will significantly enhance government departments’ digital, intelligent, and refined management of carbon emission data, providing scientific support and decision-making basis for regional carbon monitoring, trend analysis, and policy formulation.

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