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Control of fuzzy discrete event systems and its applications to clinical treatment planning

机译:模糊离散事件系统的控制及其在临床治疗计划中的应用

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In this paper, we further develop a modeling and control approach to fuzzy discrete event systems that we initially proposed in Lin, F. and H. Ying, (2001), (2002). We first investigate an optimal control problem in fuzzy discrete event systems. The problem is abstracted from real applications in biomedical fields. The control objective is to maximize a treatment effectiveness measure while keeping some cost below a given level. This problem is difficult because both the effectiveness function and the cost function are state dependent and hence are not monotonic. Furthermore, the state space of a fuzzy discrete event system is infinite in general. We develop an online approach that can solve this problem. We then apply this approach to HIV/AIDS treatment planning, because it is one of the most difficult treatments in medicine. We also develop a novel computerized treatment decision-making system based on the optimal control approach. The preliminary statistic evaluation of our system shows a strong agreement between the physicians and our system in terms of which treatment regimens to be used for patients of various conditions.
机译:在本文中,我们进一步开发了一种模糊离散事件系统的建模和控制方法,该系统最初是在Lin,F.和H. Ying,(2001),(2002)中提出的。我们首先研究模糊离散事件系统中的最优控制问题。这个问题是从生物医学领域的实际应用中抽象出来的。控制目标是最大程度地提高治疗效果,同时将某些成本保持在给定水平以下。这个问题是困难的,因为有效性函数和成本函数都是依赖于状态的,因此不是单调的。此外,模糊离散事件系统的状态空间通常是无限的。我们开发了一种可以解决此问题的在线方法。然后,我们将此方法应用于HIV / AIDS治疗计划,因为它是医学上最困难的治疗方法之一。我们还开发了一种基于最佳控制方法的新型计算机化治疗决策系统。我们系统的初步统计评估表明,医生和我们的系统在针对各种情况的患者使用哪种治疗方案方面有很强的共识。

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