优化医疗保健设施中的维护工作流:多场景离散事件模拟和模拟退火方法

Joseph Mwanza, A. Telukdarie, Tak Igusa
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引用次数: 1

摘要

低资源环境下的卫生保健系统需要有效的方法来管理其稀缺的资源,特别是人员和设备。数字技术可为规避阻碍低收入经济体改善其医疗保健服务的制约因素提供手段。虽然分析和模拟技术,如排队论和离散事件模拟,已经成功地应用于解决各种优化问题跨越不同的操作环境,文献显示,他们在优化医疗保健维护系统的应用仍然相对未被探索。本研究考虑了维护工作流程优化的问题,涉及劳动力、设备可用性和成本。该研究的目的是提供客观的方法来预测资源需求,给定一组具有不同优先级和队列特征的任务请求,这些任务请求从多个队列中并行地流到同一个维护过程中进行解决。本文介绍了如何将离散事件模拟与模拟退火相结合,以开发一种决策支持工具,帮助医疗保健资产管理公司利用运营绩效数据客观地预测未来资产绩效趋势,从而确定适当的干预措施,以实现最佳绩效。该研究表明,医疗保健机构可以通过工具生成的维护策略以经济有效的方式实现效率,并且可以迅速重新评估和处理任何未来的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimising Maintenance Workflows in Healthcare Facilities: A Multi-Scenario Discrete Event Simulation and Simulation Annealing Approach
Healthcare systems in low-resource settings need effective methods for managing their scant resources, especially people and equipment. Digital technologies may provide means for circumventing the constraints hindering low-income economies from improving their healthcare services. Although analytical and simulation techniques, such as queuing theory and discrete event simulation, have already been successfully applied in addressing various optimisation problems across different operational contexts, the literature reveals that their application in optimisation of healthcare maintenance systems remains relatively unexplored. This study considers the problem of maintenance workflow optimisation with respect to labour, equipment availability and cost. The study aims to provide objective means for forecasting resource demand, given a set of task requests with varying priorities and queue characteristics that flow from multiple queues, and in parallel, into the same maintenance process for resolution. The paper presents how discrete event simulation is adopted in combination with simulated annealing to develop a decision-support tool that helps healthcare asset managers leverage operational performance data to project future asset-performance trends objectively, and thereby determine appropriate interventions for optimal performance. The study demonstrates that healthcare facilities can achieve efficiency in a cost-effective manner through tool-generated maintenance strategies, and that any future changes can be expeditiously re-evaluated and addressed.
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