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A dynamic maintenance decision approach based on maintenance action grouping for HVAC maintenance costs savings in Non-residential buildings

机译:基于维护行动分组的动态维护决策方法,可节省非住宅建筑的HVAC维护成本

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Huge maintenance costs in non-residential buildings weighted it down the overall costs allocated to HVAC (Heating, ventilation and air conditioning) system maintenance. Maintenance Management objective is to reduce or even avoid the corrective maintenance by proper planning and implementation of maintenance tasks at the right time. The aim of this paper is to early plan maintenance interventions for a multi-components system based on stoppages characteristics, system RUL (Remaining Useful Life) and components criticalities. This maintenance plan is made through a dynamic maintenance decision approach (DMDA) to help the maintenance expert in taking decision. Since combining maintenance activities is cheaper than performing maintenance on components separately, maintenance actions groupings are performed in the proposed approach by the mean of odds algorithm. This will allow optimizing system availability, reducing maintenance costs and delaying as late as possible maintenance interventions. Components criticalities are used for prioritizing components in the grouping process. Moreover, DMDA take into account predictive information such as system/components RUL, given by an existing prognostic process. At the end, a numerical example of a HVAC system with five components (Heat exchanger, filter, dampers, valve and fan) demonstrates the use and the advantages of the proposed DMDA.
机译:非住宅建筑的巨大维护成本使它在分配给HVAC(供暖,通风和空调)系统维护的总成本中所占的比重较低。维护管理的目标是通过在适当的时候正确计划和实施维护任务来减少甚至避免进行纠正性维护。本文的目的是根据停工特征,系统RUL(剩余使用寿命)和组件关键性,对多组件系统的早期维护计划进行计划。该维护计划是通过动态维护决策方法(DMDA)制定的,以帮助维护专家做出决策。由于组合维护活动比分别对组件执行维护便宜,因此在建议的方法中,通过赔率算法进行维护动作分组。这将允许优化系统可用性,降低维护成本并延迟尽可能晚的维护干预措施。组件重要性用于在分组过程中对组件进行优先级排序。此外,DMDA考虑到由现有预后过程提供的预测信息,例如系统/组件RUL。最后,一个由五个组件(热交换器,过滤器,风门,阀门和风扇)组成的HVAC系统的数值示例演示了所提出的DMDA的用法和优点。

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