用局部导数模拟压力-容积控制的人工呼吸。

IF 4.1 3区 数学 Q1 Mathematics
Advances in Difference Equations Pub Date : 2021-01-01 Epub Date: 2021-01-14 DOI:10.1186/s13662-020-03204-9
Bahar Acay, Mustafa Inc, Yu-Ming Chu, Bandar Almohsen
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引用次数: 6

摘要

我们试图在临床医学中激发一些任意阶的局部导数的利用。为此,我们利用比例导数(PD)控制器定义的局部比例导数,为自然界中出现的各种问题提供了两种有效的求解方法。在一些必要的假设下,用合形导数和截短m -导数、比例导数等修饰的合形导数,给出了肺内瞬时体积的详细描述。此外,我们希望通过绘制控制方程的几个图来研究上述算子在应用中的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Modeling of pressure-volume controlled artificial respiration with local derivatives.

Modeling of pressure-volume controlled artificial respiration with local derivatives.

Modeling of pressure-volume controlled artificial respiration with local derivatives.

Modeling of pressure-volume controlled artificial respiration with local derivatives.

We attempt to motivate utilization of some local derivatives of arbitrary orders in clinical medicine. For this purpose, we provide two efficient solution methods for various problems that occur in nature by employing the local proportional derivative defined by the proportional derivative (PD) controller. Under some necessary assumptions, a detailed exposition of the instantaneous volume in a lung is furnished by conformable derivative and such modified conformable derivatives as truncated M-derivative and proportional derivative. Moreover, we wish to investigate the performance of the above-mentioned operators in applications by plotting several graphs of the governing equations.

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来源期刊
自引率
0.00%
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0
审稿时长
4-8 weeks
期刊介绍: The theory of difference equations, the methods used, and their wide applications have advanced beyond their adolescent stage to occupy a central position in applicable analysis. In fact, in the last 15 years, the proliferation of the subject has been witnessed by hundreds of research articles, several monographs, many international conferences, and numerous special sessions. The theory of differential and difference equations forms two extreme representations of real world problems. For example, a simple population model when represented as a differential equation shows the good behavior of solutions whereas the corresponding discrete analogue shows the chaotic behavior. The actual behavior of the population is somewhere in between. The aim of Advances in Difference Equations is to report mainly the new developments in the field of difference equations, and their applications in all fields. We will also consider research articles emphasizing the qualitative behavior of solutions of ordinary, partial, delay, fractional, abstract, stochastic, fuzzy, and set-valued differential equations. Advances in Difference Equations will accept high-quality articles containing original research results and survey articles of exceptional merit.
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