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Type-2 fuzzy sets applied to multivariable self-organizing fuzzy logic controllers for regulating anesthesia

机译:类型2模糊集应用于调节麻醉的多变量自组织模糊逻辑控制器

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摘要

In this paper, novel interval and general type-2 self-organizing fuzzy logic controllers (SOFLCs) are proposed for the automatic control of anesthesia during surgical procedures. The type-2 SOFLC is a hierarchical adaptive fuzzy controller able to generate and modify its rule-base in response to the controller's performance. The type-2 SOFLC uses type-2 fuzzy sets derived from real surgical data capturing patient variability in monitored physiological parameters during anesthetic sedation, which are used to define the footprint of uncertainty (FOU) of the type-2 fuzzy sets. Experimental simulations were carried out to evaluate the performance of the type-2 SOFLCs in their ability to control anesthetic delivery rates for maintaining desired physiological set points for anesthesia (muscle relaxation and blood pressure) under signal and patient noise. Results show that the type-2 SOFLCs can perform well and outperform previous type-1 SOFLC and comparative approaches for anesthesia control producing lower performance errors while using better defined rules in regulating anesthesia set points while handling the control uncertainties. The results are further supported by statistical analysis which also show that zSlices general type-2 SOFLCs are able to outperform interval type-2 SOFLC in terms of their steady state performance.
机译:本文提出了一种新颖的间隔和通用的2型自组织模糊逻辑控制器(SOFLC),用于外科手术过程中的麻醉自动控制。类型2 SOFLC是一种分层自适应模糊控制器,能够响应于控制器的性能来生成和修改其规则库。 2型SOFLC使用2型模糊集,该2型模糊集是从真实的手术数据中获取的,这些数据捕获了患者在麻醉镇静过程中所监测的生理参数中的变异性,这些数据用于定义2型模糊集的不确定性(FOU)。进行了实验模拟,以评估2型SOFLC在信号和患者噪声下控制麻醉输送速率以维持所需的麻醉生理设定值(肌肉松弛和血压)的能力。结果表明,2型SOFLC的性能良好,性能优于以前的1型SOFLC,而麻醉控制的比较方法产生较低的性能误差,同时在处理控制不确定性时使用更好的定义规则来调节麻醉设定点。统计分析进一步支持了该结果,统计分析还表明,zSlices的常规2型SOFLC的稳态性能优于间隔2型SOFLC。

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