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零碳目标下模块化变电站集成设计优化研究

Research on Integrated Design Optimization of Modular Substationunder Zero Carbon Target

  • 摘要: 提出一种面向零碳目标的模块化变电站集成设计优化体系。通过建立标准化预制舱体结构、一体化电气设备布局、融合智能传感与能效调控系统,实现变电站的工厂化预制、装配式建设与智慧化运营。研究构建涵盖“材料—建设—运行—回收”全生命周期的碳排放量化评估模型,并针对模块化设计的关键环节提出系统性降碳策略。同时,设计一种支持高比例新能源即插即用与主动协同的柔性调控架构。基于实际试点项目的仿真与运行数据表明,优化后的模块化变电站方案可使建设阶段碳排放降低约35%,运行损耗减少18%以上,设备土地利用率提升40%,为零碳电网基础设施的快速、低碳部署提供切实可行的技术解决方案。

     

    Abstract: This study proposes a modular substation integration design optimization framework for zero carbon objectives. By establishing standardized prefabricated cabin structures, integrated electrical equipment layouts, and combining intelligent sensing with energy efficiency control systems, the framework enables factory based prefabrication, modular construction, and smart operation of substations. A carbon emission quantification model covering the entire life cycle from "materials construction operation recycling" is developed, with systematic decarbonization strategies proposed for key modular design phases. Additionally, a flexible control architecture supporting high-proportion renewable energy plug and play and active coordination is designed. Simulation and operational data from pilot projects demonstrate that the optimized modular substation solution reduces carbon emissions by approximately 35% during construction, decreases operational losses by over 18%, and improves equipment land utilization by 40%. These findings provide a practical technical solution for the rapid, low carbon deployment of zero-carbon grid infrastructure.

     

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