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A ROBUST MULTIPLE-MODEL ADAPTIVE CONTROL SYSTEM FOR AUTOMATIC DELIVERY OF A VASOACTIVE DRUG

机译:一种坚固的多模型自适应控制系统,可自动递送血管活性药物

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Automatic closed-loop administration of sodium nitroprus-side for the regulation of blood pressure in patients experiencing acute hypertension has been the subject of intense research over the last three decades. Yet, to date, manual administration of vasoactive drugs by a human operator remains the standard of care in the clinical setting. This manuscript describes a novel control approach for this application based on Robust Multiple-Model Adaptive Control (RMMAC). The RMMAC architecture features robust controllers designed with μ synthesis and Kalman filtering for system estimation. The new system was coupled with a mathematical model of a patient's response to drug infusion and tested in computational simulations. The results indicate that the RMMAC approach has the potential to deliver robust performance even in challenging operating conditions, with mean arterial pressure remaining within the specified target range over 99% of the time.
机译:自动闭环施用氮施氮含量为急性高血压患者调节血压的调节一直是过去三十年的激烈研究的主题。然而,迄今为止,人工操作员手动管理血管活性药物仍然是临床环境中的护理标准。此稿件基于强大的多模型自适应控制(RMMAC)描述了本申请的新型控制方法。 RMMAC架构具有设计具有μ合成和Kalman滤波的鲁棒控制器,用于系统估计。新系统与患者对药物输注的反应的数学模型相结合,并在计算模拟中测试。结果表明,即使在具有挑战性的操作条件下,RMMAC方法也有可能提供鲁棒性能,平均动脉压在特定目标范围内超过99%的时间。

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