Heart assist devices: Modeling and diagnostics

Taoufik Wassar, M. Franchek, K. Grigoriadis, Cedric Benkowski, Mehmet C. Kadipasaoglu, S. Parnis
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引用次数: 1

Abstract

In this paper, adaptive stead-state models are presented for axial flow-pumps used as heart assist devices. These models predict flow rate and power consumption of the pump based on the pressure differential (head) and impeller speed. The developed models are identified using system identification techniques on data obtained from a mock circulatory loop. The mock circulatory experiments include physiologic conditions ranging from a healthy heart function to heart failure. The online adaptive nature of these models is used to estimate effective blood viscosity in real-time. Additional mock circulatory loop experiments are performed to emulate flow obstruction at the pump outlet. Results show that the coefficients from the adapted models can be used to detect, identify and estimate the fault.
心脏辅助设备:建模和诊断
本文建立了用于心脏辅助装置的轴流泵的自适应稳态模型。这些模型根据压差(扬程)和叶轮转速来预测泵的流量和功耗。开发的模型是使用系统识别技术对从模拟循环回路获得的数据进行识别的。模拟循环实验包括从健康的心脏功能到心力衰竭的生理条件。这些模型的在线自适应特性被用于实时估计有效血液粘度。另外进行了模拟循环回路实验来模拟泵出口的流动阻塞。结果表明,该模型的系数可用于故障的检测、识别和估计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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