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An integrated analysis of capacity allocation and patient scheduling in presence of seasonal walk-ins

机译:季节性步道存在的容量分配和患者调度的综合分析

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This study analyzes two decision levels in appointment system design in the context of clinics that face seasonal demand for scheduled and walk-in patients. The macro-level problem addresses access rules dealing with capacity allocation decisions in terms of how many slots to reserve for walk-ins and scheduled patients given fixed daily capacity for the clinic session. The micro-level problem addresses scheduling rules determining the specific time slots for scheduled arrivals. A fully-integrated simulation model is developed where daily demand actualized at the macro level becomes an input to the micro model that simulates the in-clinic dynamics, such as the arrivals of walk-ins and scheduled patients, as well as stochastic service times. The proposed integrated approach is shown to improve decision-making by considering patient lead times (i.e., indirect wait), direct wait times, and clinic overtime as relevant measures of performance. The traditional methods for evaluating appointment system performance are extended to incorporate multiple trade-offs. This allows combining both direct wait and indirect wait that are generally addressed separately due to time scale differences (minutes vs. days). The results confirm the benefits of addressing both decision levels in appointment system design simultaneously. We investigate how environmental factors affect the performance and the choice of appointment systems. The most critical environmental factors emerge as the demand load, seasonality level, and percentage of walk-ins, listed in the decreasing order of importance.
机译:本研究分析了临床背景下的预约系统设计中的两个决策水平,面对预定和步行患者的季节性需求。宏观级问题地址处理了处理能力分配决策的访问规则,以便为诊所会议定期为固定日常能力储备有多少插槽和预定的患者。微级问题解决了确定针对计划到达的特定时隙的调度规则。开发了一个全集成的仿真模型,其中在宏观层面的日常需求成为模拟临床动态的微型模型的输入,例如行走和预定患者的抵达,以及随机的服务时间。拟议的综合方法显示通过考虑患者的交货时间(即间接等待),直接等待时间和诊所加班作为相关绩效的相关措施来改善决策。延长了评估预约系统性能的传统方法,以包含多个权衡。这允许组合直接等待和间接等待通常由于时间尺度差异而单独寻址的直接等待(分钟与天数)。结果确认了同时预约系统设计中解决两个决策级别的好处。我们调查环境因素如何影响性能和约会系统的选择。最关键的环境因素作为需求负荷,季节性水平和行走令的百分比,以减少的重要性。

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