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首页> 外文期刊>Indian Journal of Science and Technology >Enhancement of Digital PID Controller Performance for Blood Glucose Level of Diabetic Patients using Disparate Tuning Techniques
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Enhancement of Digital PID Controller Performance for Blood Glucose Level of Diabetic Patients using Disparate Tuning Techniques

机译:使用不同的调整技术提高糖尿病患者血糖水平的数字PID控制器性能

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Objectives: To design digital PID controller by using CHR-I and CHR-II tuning techniques, as it helps in finding out the tuning parameters of controllers for a specific system. Transformation of analog to digital PID controller using various transformation techniques like first order hold method, impulse-invariant mapping, Tustin approximation and zero-pole mapping equivalents and also the mathematical modeling of blood glucose level, such that a system injects the exact amount of insulin into the body of diabetic patient to maintain his/her glucose level to the normal range. Method/Statistical Analysis: The differential equation of the blood glucose level is formulated and then it is converted to three-dimensional Laplace equation using forward Laplace transform. Using the Laplace transform the differential equation of the blood glucose is converted into a s-domain equation. Then, using the s-domain equation as the equation of the system and the Tuning techniques, CHR-I and CHR-II, the tuning parameters (Kp, Ki and Kd) are acquired. Then, it is converted into digital, i.e. in z-domain, by applying disparate transformation techniques. Findings: On analyzing the acquired equation, it is depicted that on tuning the controller with CHR-I tuning technique the system exhibits zero overshoot which is most reliable and efficient for diabetic patient. Also, a considerable settling time of 6.3362 seconds is also achieved. Application/Improvement: Therefore, a system that can inject the exact amount of insulin into the patient's blood and bring the blood glucose level to the normal range, by automatically calculating the amount of insulin required, from the available status of blood glucose level, is being achieved.
机译:目标:通过使用CHR-I和CHR-II调节技术来设计数字PID控制器,因为它有助于找出特定系统的控制器的调节参数。使用一阶保持方法,脉冲不变映射,Tustin逼近和零极点映射等价物以及血糖水平的数学模型,通过各种转换技术将模数转换为数字PID控制器,以便系统注入准确量的胰岛素进入糖尿病患者体内,以将其葡萄糖水平维持在正常范围内。方法/统计分析:制定血糖水平的微分方程,然后使用正向拉普拉斯变换将其转换为三维拉普拉斯方程。使用拉普拉斯变换,将血糖的微分方程转换为s域方程。然后,使用s域方程作为系统方程和调整技术CHR-I和CHR-II,获取调整参数(Kp,Ki和Kd)。然后,通过应用不同的转换技术将其转换为数字,即在z域中。发现:在分析所获得的方程式时,描述了在使用CHR-1调整技术调整控制器时,系统显示出过冲为零,这对于糖尿病患者而言是最可靠,最有效的。此外,还可以实现6.3362秒的可观稳定时间。应用/改进:因此,一个系统可以通过根据血糖水平的可用状态自动计算所需的胰岛素量,将准确量的胰岛素注射到患者的血液中,并使血糖水平达到正常范围。被实现。

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