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A polynomial modeling and state feedback control of blood glucose regulatory in diabetic patients

机译:糖尿病患者血糖调节的多项式建模和状态反馈控制

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In this paper a new linear state feedback controller for artificial pancreas is proposed to regulate the blood glucose level in diabetic patients. Diabetes mellitus is a family of chronic metabolic diseases in which body's blood glucose regulatory system doesn't function properly. In this study, Bergman's minimal model has been used as a base model, to reformulate dynamics of insulin and glucose concentrations in blood's plasma as a constrained polynomial dynamical system. Since it is hard to derive exact value of parameters in most biological systems, all parameters of the model has been considered uncertain and therefore parametric uncertainty has been exploited in control design. Based on sum of squares technique, a linear state feedback controller has been obtained to regulate the blood's insulin and glucose concentration levels around the basal levels. Main achievements of this paper are simplicity of controller structure which makes it easy to implement, parametric uncertainty to cover more patients and patient-nonspecific design, and employment of nonlinear techniques without any simplifications.
机译:在本文中,提出了一种用于人造胰腺的新型线性状态反馈控制器,以调节糖尿病患者的血糖水平。糖尿病是一系列慢性代谢性疾病,其中人体的血糖调节系统无法正常运行。在这项研究中,Bergman的最小模型已被用作基础模型,以将血浆中胰岛素和葡萄糖浓度的动态重新表述为受约束的多项式动力学系统。由于在大多数生物系统中很难得出确切的参数值,因此模型的所有参数都被认为是不确定的,因此在控制设计中已经利用了参数不确定性。基于平方和技术,已经获得了线性状态反馈控制器,以将血液的胰岛素和葡萄糖浓度水平调节到基本水平附近。本文的主要成就是控制器结构简单,易于实施,参数不确定性可覆盖更多患者和非特定患者设计,以及采用非线性技术而无任何简化。

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