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Extended and Unscented Kalman Filter design for hybridoma cell fed-batch and continuous cultures.

机译:杂交瘤细胞补料和连续培养的扩展和无味卡尔曼过滤器设计。

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In order to mantain hybridoma cell cultures in optimal operating conditions, on-line measurements of glutamine and glucose concentrations are required, implying the availability of probes, which are expensive and with poor durability. A way to overcome this problem is to design software sensors. In this work, both Extended and Unscented Kalman Filters are developed in order to estimate glucose and glutamine concentrations, based on biomass, lactate and ammonia on-line measurements. System observability conditions are first examined. The performances of both software sensors are analyzed with simulations of hybridoma cell cultures in fed-batch and continuous bioreactor operating modes. Three different tests are conducted in order to compare the performance of both observers: continuous culture with constant feeding profile, fed-batch culture with both constant and exponential feeding profiles. Also, two different sets of parameters are investigated: the ones obtained by using the least-squares method in order to minimize the error between model predictions and experimental measurements, and the ones which are modified by minimizing a cost function combining the usual least-squares criterion with a state estimation sensitivity criterion.
机译:为了在最佳操作条件下维持杂交瘤细胞培养,需要对谷氨酰胺和葡萄糖浓度进行在线测量,这意味着探针的可用性很高,且价格昂贵且耐用性差。解决此问题的一种方法是设计软件传感器。在这项工作中,开发了扩展和无味卡尔曼过滤器,以便根据生物量,乳酸和氨的在线测量来估算葡萄糖和谷氨酰胺的浓度。首先检查系统可观察性条件。通过模拟杂交瘤细胞在补料分批和连续生物反应器操作模式下的培养,分析了这两种软件传感器的性能。为了比较两个观察者的表现,进行了三个不同的测试:具有恒定进料轮廓的连续培养,具有恒定和指数进料轮廓的分批补料培养。此外,还研究了两组不同的参数:使用最小二乘法获得的参数,以最小化模型预测和实验测量之间的误差,以及通过最小化结合常用最小二乘法的成本函数进行修改的参数。状态估计敏感度标准。

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