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Design of an artificial pancreas using zone model predictive control with a Moving Horizon State Estimator

机译:使用带运动层状态估计器的区域模型预测控制设计人造胰腺

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A zone model predictive control (zone-MPC) algorithm that utilizes the Moving Horizon State Estimator (MHSE) is presented. The control application is an artificial pancreas for treating people with type 1 diabetes mellitus. During the meal challenge, the prediction quality of the zone-MPC algorithm with the MHSE was significantly better than when using the current Luenberger observer to provide the state estimate. Consequently, the controller using the MHSE rejected the meal disturbance faster and without inducing extra hypoglycemia risk (e.g., lower postprandial blood glucose peak by 10 mg/dL and higher postprandial minimum blood glucose by 11 mg/dL). The faster rejection of the meal disturbance led to a longer time in the clinically accepted safe region (70-180 mg/dL) by 13%, and this may reduce the likelihood of the complications related to type 1 diabetes mellitus.
机译:提出了一种利用移动水平状态估计器(MHSE)的区域模型预测控制(zone-MPC)算法。对照应用是用于治疗1型糖尿病患者的人造胰腺。在进餐挑战期间,使用MHSE的zone-MPC算法的预测质量明显优于使用当前的Luenberger观察器提供状态估计值时的质量。因此,使用MHSE的控制器可以更快地拒绝进餐干扰,并且不会引起额外的低血糖风险(例如,餐后血糖峰值降低10 mg / dL,餐后最低血糖升高11 mg / dL)。膳食干扰的更快排除导致在临床上可接受的安全区域(70-180 mg / dL)的时间延长了13%,这可以减少与1型糖尿病相关的并发症的可能性。

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