零碳服务区全生命周期动态评估方法、装置、设备及介质

By constructing a multi-source heterogeneous data evaluation database and a ternary fusion dynamic evaluation model, the multi-dimensional, dynamic, and goal-oriented ambiguity problems of zero-carbon technology evaluation in highway service areas were solved, realizing the optimization of carbon emission reduction potential and costs throughout the entire life cycle and providing reliable decision support.

CN122088995BActive Publication Date: 2026-07-17HUNAN COMM RES INST CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
HUNAN COMM RES INST CO LTD
Filing Date
2026-04-21
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing technologies for assessing zero-carbon technologies in highway service areas suffer from problems such as a single assessment dimension, a static assessment model, a lack of coupling relationships, and a vague goal orientation. This makes it impossible to accurately quantify the dynamic emission reduction potential and cost feasibility of a combination of zero-carbon technologies throughout their entire life cycle.

Method used

A dual-objective assessment database is constructed using multi-source heterogeneous data. Combined with life-cycle carbon accounting and cost accounting models, a ternary fusion dynamic assessment model is used to conduct multi-scenario dynamic simulations, thereby realizing the dynamic correlation analysis between carbon and cost as dual objectives.

Benefits of technology

Accurately identify the carbon reduction potential and cost optimization space at each stage of the entire life cycle, improve the scientific nature and foresight of the assessment, provide reliable decision support for the planning, construction, operation and dismantling and recycling of zero-carbon service areas, and help the sustainable development of zero-carbon service areas.

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Abstract

本发明公开了一种零碳服务区全生命周期动态评估方法、装置、设备及介质,该方法包括:采集零碳服务区全生命周期多源异构数据并预处理,构建碳核算与成本双目标评估数据库,构建多阶段碳流全生命周期碳核算模型得到全生命周期净碳排放量,构建多阶段成本全生命周期成本核算模型得到全生命周期总成本,融合系统动力学、碳核算及成本核算模型构建三元融合动态评估模型,经多情景动态模拟获得结果,基于模拟结果完成零碳服务区全生命周期双目标动态评估;由于本发明通过多模型融合与多情景模拟实现全生命周期动态评估,有效解决评估维度单一、静态核算、耦合缺失的问题,提升了零碳服务区评估的精准度与工程适用性。
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