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首页> 外文期刊>The international journal of artificial organs >Dynamic modeling and identification of an axial flow ventricular assist device.
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Dynamic modeling and identification of an axial flow ventricular assist device.

机译:轴流式心室辅助设备的动态建模和识别。

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An accurate characterization of the hemodynamic behavior of ventricular assist devices (VADs) is of paramount importance for proper modeling of the heart-pump interaction and the validation of control strategies. This paper describes an advanced test bench, which is able to generate complex hydraulic loads, and a procedure to characterize rotary blood pump performance in a pulsatile environment. Special focus was laid on model parameter identifiability in the frequency domain and the correlation between dynamic and steady-state models. Twelve combinations of different flow/head/speed signals, which covered the clinical VAD working conditions, were generated for the pump characterization. Root mean square error (RMSE) between predicted and measured flow was used to evaluate the VAD model. The found parameters were then validated with broadband random signals. In the experiments the optimization process always successfully converged. Even in the most demanding dynamic conditions the RMSE was 7.4 ml/sec and the absolute error never exceeded 24.9 ml/sec. Validity ranges for the identified VAD model were: flow 0-180 ml/sec; head 0-120 mmHg; speed 7.5-12.5 krpm. In conclusion, a universal test bench and a characterization procedure to describe the hydrodynamic properties of rotary blood pumps were established. For a particular pump, a reliable mathematical model was identified that correctly reproduced the relationship between instantaneous VAD flow, head and impeller speed.
机译:正确表征心室辅助设备(VAD)的血液动力学行为对于正确建模心泵相互作用和验证控制策略至关重要。本文介绍了一种先进的测试台,它能够产生复杂的液压负载,并描述了脉动环境中旋转式血泵性能的程序。特别关注的是频域中模型参数的可识别性以及动态模型和稳态模型之间的相关性。涵盖了临床VAD工作条件的十二种不同流量/扬程/速度信号组合用于泵的表征。预测流量与测量流量之间的均方根误差(RMSE)用于评估VAD模型。然后使用宽带随机信号验证找到的参数。在实验中,优化过程始终会成功收敛。即使在最苛刻的动态条件下,RMSE仍为7.4 ml / sec,绝对误差从未超过24.9 ml / sec。所识别的VAD模型的有效范围为:流量0-180 ml / sec;头0-120 mmHg;速度7.5-12.5 krpm。总之,建立了描述旋转式血泵水动力特性的通用试验台和表征程序。对于特定的泵,确定了可靠的数学模型,该模型正确地再现了瞬时VAD流量,扬程和叶轮速度之间的关系。

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