论文标题

考虑学习效果,施工时间和电缆维护成本

A Multihorizon Approach for the Reliability Oriented Network Restructuring Problem, Considering Learning Effects, Construction Time, and Cables Maintenance Costs

论文作者

Bordin, Chiara, Mishra, Sambeet, Palu, Ivo

论文摘要

本文提出了一种技术经济优化工具,可以通过最大程度地减少网络强化和重新配置的成本来研究如何以更经济和有效的方式采取电力系统扩展决策。进行分析以调查如何在几年的时间范围内持续保持网络的可行性和满足负载的能力来计划网络加强和重新配置。这项研究的主要贡献是在数学模型中包含关键特征,以增强投资决策过程。包括现有电缆和设备的代表性维护成本,以分析电力项目对投资决策的历史性能的影响。开发了一种多摩力值方法,以考虑需求的长期变化,并结合电缆维护成本的长期变化。此外,考虑到技术学习系数,以考虑到多年来重复进行网络重组和/或重新配置的投资时,出现的投资成本降低。最后,包括施工时间限制,以找到适当的投资计划,该计划允许可行的功率流,以及在建立新连接或重组现有连接所需的几年中。这项研究还为电力系统可靠性领域内的未来研究方向提供了建议。分析表明,要对电缆进行更好的定义,对电缆进行了重要的定义,这些方法的重要和迫切需求是针对网络重组,重新配置和扩展的电缆的预测维护成本和学习系数。

This paper presents a techno-economic optimisation tool to study how the power system expansion decisions can be taken in a more economical and efficient way, by minimising the consequent costs of network reinforcement and reconfiguration. Analyses are performed to investigate how the network reinforcement and reconfiguration should be planned, within a time horizon of several years, by continuously keeping the network feasibility and ability to satisfy the load. The main contribution of this study is the inclusion of key features within the mathematical model to enhance the investment decision making process. A representative maintenance cost of existing cables and apparatus is included, to analyse the influence of the historical performance of the electric items on the investment decisions. A multihorizon methodology is developed to take into account the long term variation of the demand, combined with the long term variation of cables maintenance costs. Moreover, technological learning coefficients are considered, to take into account the investment costs reductions that arise when an investment in network restructuring and/or reconfiguration is repeated throughout the years. Finally, construction time constraints are included to find a proper investment scheduling that allows a feasible power flow, also during the years required to build a new connection or restructure an existing one. This study is also providing recommendations for future research directions within the power system reliability field. The analyses show the important and urgent need of proper methodologies for a better definition of cables projected maintenance costs and learning coefficients dedicated to network restructuring, reconfiguration and expansion.

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