为克服目前全寿命周期成本(life cycle cost,LCC)技术的应用局限于设备运行或维护阶段的不足,针对输电网整体建立一个3维LCC层级模型,包括时间维度、元件维度和费用维度。费用维度进一步分解为设备级、系统级、外部环境成本。研究了以可靠性为中心的维护手段的应用对维护成本的影响,利用电量不足期望值计算故障成本。在此基础上,对风电等4种不确定因素进行建模,建立以LCC成本最小和切负荷量最小为多目标的输电网机会约束规划模型。采用正态边界交点算法联合改进小生境遗传算法,对模型有效求解。最后,分别对18节点系统和77节点系统进行算例分析。研究结果给出了帕累托解集及推荐的最优规划方案;此外,LCC费用分解图表明了各费用的比重和影响,有利于指导未来资产管理。
The requirement of economy in transmission network expansion planning requires obviously not only the minimum costs of short-term investment, but also the entire costs such as support costs and maintenance costs during long-term period besides investment. Life cycle cost (LCC) technology provides exactly a new idea and method to strengthen cost management and improve network planning. LCC is the summation of the gross fare incurred during the whole life cycle including the support of logistics, discards, etc.