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A Multi-Period Approach for the Optimal Energy Retrofit Planning of Street Lighting Systems

机译:道路照明系统最佳能源改造计划的多周期方法

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摘要

Investing in the optimal measures for improving the energy efficiency of urban street lighting systems has become strategic for the economic, technological and social development of cities. The decision-making process for the selection of the optimal set of interventions is not so straightforward. Several criticalities-such as difficulties getting access to credit for companies involved in street lighting systems refurbishment, budget constraints of municipalities, and unawareness of the actual energy and economic performance after a retrofitting intervention-require a decision-making approach that supports the city energy manager in selecting the optimal street lighting energy efficiency retrofitting solution while looking not only based on the available budget, but also based on the future savings in energy expenditures. In this context, the purpose of our research is to develop an effective decision-making model supporting the optimal multi-period planning of the street lighting energy efficiency retrofitting, which proves to be more effective and beneficial than the classical single-period approach and has never before been applied to the considered public lighting system context. The proposed methodology is applied to a real street lighting system in the city of Bari, Italy, showing the energy savings and financial benefit obtained through the proposed method. Numerical experiments are used to investigate and quantify the effects of using a multi-period planning approach instead of a single-period approach.
机译:为改善城市街道照明系统的能源效率而投资的最佳措施已成为城市经济,技术和社会发展的战略。选择最佳干预措施的决策过程并非如此简单。若干关键问题,例如,涉及道路照明系统翻新的公司难以获得信贷,市政当局的预算限制以及对改造后的实际能源和经济绩效的不了解,都需要一种决策方法来支持城市能源管理者在选择最佳的路灯节能改造解决方案时,不仅要根据可用预算,而且还要根据未来的能源支出节省。在这种情况下,我们的研究目的是开发一种有效的决策模型,以支持对路灯能效改造的最佳多周期规划,该方法被证明比传统的单周期方法更为有效和有益,并且具有从来没有应用于已考虑的公共照明系统环境。所提出的方法应用于意大利巴里市的真实街道照明系统,显示了通过所提出的方法获得的节能和财务收益。数值实验用于调查和量化使用多周期计划方法而不是单周期方法的效果。

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