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Moving-horizon-like state estimation via continuous glucose monitor feedback in MPC of an artificial pancreas for type 1 diabetes

机译:通过对1型糖尿病人工胰腺的MPC中连续葡萄糖监测反馈的运动水平状态估计

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An extension of a novel state estimation scheme is presented. The proposed method is developed for model predictive control (MPC) of an artificial pancreas for automatic insulin delivery to people with type 1 diabetes mellitus; specifically, glycemia control based on feedback by a continuous glucose monitor. The state estimation strategy is akin to moving-horizon estimation, but effectively exploits knowledge of sensor recalibrations, ameliorates the effects of delays between measurements and the controller call, and accommodates irregularly sampled output measurements. The method performs a function fit and a sampling action to synthesize a mock output trajectory for constructing the state. In this paper the structure of the fitted function prototype is divorced from the structure of the function that is sampled, facilitating the strategic elimination of prediction artifacts that are not observed in the actual plant. The proposed estimation strategy is demonstrated using clinical data collected by a Dexcom G4 Platinum continuous glucose monitor.
机译:提出了一种新颖的状态估计方案的扩展。拟议中的方法被开发用于人工胰腺的模型预测控制(MPC),以将胰岛素自动递送给1型糖尿病患者。具体而言,基于连续血糖监测仪的反馈控制血糖。状态估计策略类似于水平移动估计,但是有效地利用了传感器重新校准的知识,改善了测量与控制器调用之间的延迟影响,并适应了不规则采样的输出测量。该方法执行函数拟合和采样动作以合成模拟输出轨迹以构造状态。在本文中,拟合函数原型的结构与所采样函数的结构不同,从而有利于从战略上消除在实际工厂中未观察到的预测工件。使用由Dexcom G4 Platinum连续血糖监测仪收集的临床数据证明了所提出的估算策略。

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