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Implications of Meal Library Meal Detection to Glycemic Control of Type 1 Diabetes Mellitus through MPC Control

机译:通过MPC控制对膳食库和膳食检测对1型糖尿病血糖控制的影响

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Recent technological progress in insulin pumps and continuous glucose monitors (CGM) are enabling development of an artificial β-cell that will allow superior glycemic control for patients with type 1 diabetes mellitus (T1DM). A control algorithm that is implemented in such system will need to regulate basal insulin as well as to reject unmeasured disturbances, such as meals. A traditional approach is to combine feed-forward control as a means to overcome meal disturbances, where the user informs the controller on a meal and estimates the size of that together with PID control or Model Predictive Control (MPC) to address the regulation problem. This approach fails with T1DM adolescents and children because they often forget to give a pre-meal bolus and are poor at estimating meal sizes. A novel approach to overcome this problem is suggested in this paper by the combination of a meal library and a meal detection algorithm in the framework of Model Predictive Control (MPC). In this work, the challenging problem of an unannounced mixed meal is being addressed using this novel combination.
机译:胰岛素泵和连续葡萄糖监测器(CGM)的最近技术进步使得能够开发人工β细胞,这将允许患有1型糖尿病(T1DM)的患者的血糖控制优异的血糖控制。在这种系统中实施的控制算法需要调节基础胰岛素以及拒绝未测量的扰动,例如膳食。一种传统方法是将前馈控制作为克服膳食紊乱的手段,其中用户通知控制器在膳食上并估计与PID控制或模型预测控制(MPC)一起估计该调节问题的大小。这种方法因T1DM青少年和儿童而失败,因为他们常常忘记给膳食预粉,并且在估计膳食尺寸时差。通过在模型预测控制(MPC)框架中,本文在本文中提出了一种克服该问题的新方法。在这项工作中,正在使用这种新颖组合来解决未经发扬的混合膳食的具有挑战性问题。

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