Biomedical Machine Maintenance Scheduling

Danielle Katz, Se-Ryang Kim, Alexandra King, Elisha Palm, Johnathon Dulin, Justin T. Hill, Greg Steeger
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Abstract

Tissue banks procure approximately 45,000 tissue donations per year, providing nearly 9,000,000 individuals (about half the population of New York) with life-enhancing and life-saving medical procedures. Proper biobank machine maintenance is imperative to this process. Mandatory forms of maintenance are critical to avoid unexpected malfunctions, which can halt operations and render samples unusable. Each machine has a unique reliability rate within the system; although some can quickly be repaired or replaced, many processes rely on limited machinery where even planned downtime can significantly influence the tissue processing. AlloSource, one of the largest tissue manufacturers in the United States, too often schedules these preventive events unnecessarily or inconveniently, resulting in machines breaking down at inopportune times. In response to these inefficiencies we ask, “What is the best consolidated and standardized equipment maintenance schedule that maximizes monthly maintenance events to ensure increased equipment availability while meeting the demand of the biomedical manufacturing network?” We use an optimization model to consider equipment reliability, downtime, availability, and demand to develop a preventive maintenance schedule. Our model focuses on scheduling the maximum number of events the maintenance crew can conduct each month to ensure vital equipment to the allograft process is available, which provides more opportunities for tissue therapies. In doing so, the maintenance crew is also able to complete more events, driving up annual throughput while driving down equipment downtime.
生物医学机器维护计划
组织库每年获得约45,000份组织捐赠,为近900万人(约为纽约人口的一半)提供改善生活和挽救生命的医疗程序。在这个过程中,适当的生物库机器维护是必不可少的。强制形式的维护对于避免意外故障至关重要,意外故障可能会中断操作并使样本无法使用。每台机器在系统内都有独特的可靠性;虽然有些过程可以快速修复或更换,但许多过程依赖于有限的机器,即使计划停机也会严重影响组织处理。AlloSource是美国最大的纸巾制造商之一,它经常安排这些不必要或不方便的预防性活动,导致机器在不合适的时间发生故障。针对这些低效率问题,我们提出了这样的问题:“什么是最佳的统一和标准化设备维护计划,可以最大限度地提高每月维护活动,以确保提高设备可用性,同时满足生物医学制造网络的需求?”我们使用优化模型来考虑设备的可靠性、停机时间、可用性和需求,以制定预防性维护计划。我们的模型侧重于安排维护人员每个月可以进行的最大数量的活动,以确保同种异体移植过程的重要设备可用,这为组织治疗提供了更多的机会。这样,维护人员也能够完成更多的活动,提高年吞吐量,同时减少设备停机时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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