SolidWorks心血管系统平台的设计,用于自主导航机器人的测试

Cristina Nuevo-Gallardo, José Emilio Traver, Inés Tejado, Javier Prieto-Arranz, M. López, Blas M. Vinagre
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引用次数: 1

摘要

espanolEste篇介绍了平台simulacion心血管系统(SCV) disenada 3D设计赛门铁克软件,基于contraccion hidraulico描述了动态模型的心脏和动脉carotida左边,就是性格ciclico和autonomo首先先验证,通过演练/ Simulink工具。SolidWorks设计的平台旨在开发小型游泳机器人的实验和测试,允许模拟这些机器人在人类循环系统中导航的条件。本文介绍了在Solidworks中设计的心血管系统(CVS)实验平台,该平台基于描述心脏收缩动力学及其循环和自主特性的电模型。从这个模型开始,以前推广到包括左共颈动脉的动力学,一个模拟CVS在该区域的行为的水力学模型已经被Matlab/Simulink工具验证。所设计的平台是该液压模型的一个代表,其目的是测试小型游泳机器人,并模拟这些机器人在人体循环系统中导航的条件。
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Diseño en SolidWorks de plataforma del sistema cardiovascular para ensayo de robots de navegación autónoma
espanolEste articulo presenta una plataforma de simulacion del sistema cardiovascular (SCV) disenada en el software de diseno 3D SolidWorks, basada en un modelo hidraulico que describe la dinamica de contraccion del corazon y de la arteria carotida izquierda, asi como el caracter ciclico y autonomo del primero, previamente validado mediante la herramienta Matlab/Simulink. La plataforma disenada en SolidWorks tiene como objetivo el desarrollo de experimentos y ensayos con robots nadadores de pequenas dimensiones, permitiendo emular las condiciones en las que se encontrarian estos robots navegando por el sistema circulatorio humano. EnglishThis article presents an experimental platform of the cardiovascular system (CVS) designed in Solidworks and based on an electric model which describes the contraction dynamics of the heart as well as its cyclic and autonomous caracteristics. Depart from this model, previously generalized to include the dynamics of the left common carotid artery, a hydraulic model was developed emulating the behaviour of the CVS in that zone, been validated by the Matlab/Simulink tool. The designed platform is a representation of this hydraulic model, which objective is to test swimming robots of small dimensions and to allow the simulation of the conditions in which these robots would navigate in the human circulatory system.
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