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Real-Time Ambulance Dispatching and Relocation

机译:实时救护车调度和重定位

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摘要

In this study, we develop a flexible optimization framework for real-time ambulance dispatching and relocation. In addition to ambulance redeployment, we consider a general dispatching and relocation strategy by which the decision maker has the option to (i) select any available ambulance to dispatch to a call or to queue the call and (ii) send an idle ambulance to cover the location of an ambulance just dispatched to a call. We formulate the problem as a stochastic dynamic program, and, because the state space is unbounded, an approximate dynamic programming (ADP) framework is developed to generate high-quality solutions. We assess the quality of our solutions by developing a lower bound on the expected response time and computing a lower bound on the expected fraction of late calls of any relocation policy. We test the performance of our policies and available benchmarks on an emergency medical services system in Mecklenburg County, North Carolina. The results show that our policies are near optimal and significantly outperform available benchmarks. In particular, our ADP policy reduces the expected response time and fraction of high-priority late calls by 12% and 30.6%, respectively, over the best available static benchmarks in the case study. Moreover, the results provide insights on the contribution of each dispatching, redeployment, and reallocation strategy.
机译:在这项研究中,我们为实时救护车的调度和重新定位开发了一个灵活的优化框架。除了重新部署救护车外,我们还考虑了一种通用的调度和重定位策略,决策者可以通过该策略选择(i)选择任何可用的救护车,以派遣到呼叫中或将呼叫排队,以及(ii)发送空闲的救护车以覆盖刚刚派去电话的救护车的位置。我们将问题表示为随机动态程序,并且由于状态空间是无穷大的,因此开发了一种近似动态程序设计(ADP)框架来生成高质量的解决方案。我们通过制定预期响应时间的下限并计算任何迁移策略的延迟呼叫的预期比例的下限来评估解决方案的质量。我们在北卡罗来纳州的梅克伦堡县测试了我们的政策和可用基准在紧急医疗服务系统上的性能。结果表明,我们的政策接近最佳,并且明显优于现有基准。尤其是,与案例研究中可用的最佳静态基准相比,我们的ADP策略将预期响应时间和高优先级延迟呼叫的比例分别降低了12%和30.6%。此外,结果还提供了有关每种调度,重新部署和重新分配策略的贡献的见解。

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