基于全寿命周期的变电设备选型决策方法及系统开发
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引用本文:陈斐,杨海波,王永庆.基于全寿命周期的变电设备选型决策方法及系统开发[J].电网与清洁能源,2016,32(12):93~99
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作者单位
陈斐 国网陕西省电力公司 陕西 西安 710048 
杨海波 国网陕西省电力公司 陕西 西安 710048 
王永庆 国网陕西省电力公司 电力科学研究院陕西 西安 710054  
基金项目:基金项目:国家自然科学基金(51507141)。
中文摘要:摘要: 应用全寿命周期管理将成为未来电力系统管理工作的发展趋势。将电网设备成本管理与全寿命周期管理相结合,针对当前电网变电设备投资决策中欠缺对项目综合效益的考虑,设计规划阶段未充分考虑项目总成本优化等问题,建立了更加完善的电网设备全寿命周期成本分析模型,引入成本损耗总效应的概念,实现全寿命周期管理在电网设备决策选型的典型应用,并基于“一台三库”模式的综合集成平台,进行了电网设备全寿命周期决策系统的开发,使系统具有可移植、可扩展、模块化等多项优势,最后以甘肃某电网工程设备选型为例实现应用,结果表明,提出的理论、方法及工具技术先进且实际可用,为电网设备全寿命周期管理工作的开展提供了有力的支持。
中文关键词:关键词: 电网设备  全寿命周期  组件开发  集成平台
 
Decision-Making Method and System Development of Substation Equipment Selection Based on Life Cycle
Abstract:ABSTRACT: Application of life cycle management is a major trend in the power system management in the future. Based on the combination of cost management of the grid equipment and life cycle management, in view of lack of consideration of com-prehensive benefits of the project which often occurs in the decision-making for power grid equipment investment curren-tly, and in view of failure to give a full consideration to the total cost optimization in the planning and design stage, this paper builds a more complete cost analysis model based on total life cycle management for the power grid equipment and introduces the concept of the total cost and loss effect and helps to realize application of life cycle management in the decision-making of the grid equipment selection. In addition, based on the integrated platform of “One Platform, Three Libraries”, the decision-making system for the grid equipment selection based on life cycle management is developed to make the system portable, scalable and modular. Finally, with the equipment selection of a certain power grid project in Gansu province as an example, the proposed theory, method and tools are applied and tested, and the result suggests that they are both technical advanced and feasible, able to provide strong support for the further application of life cycle management in the grid equip-ment management.
keywords:KEY WORDS:power grid equipment  life cycle  component development  integration platform
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