DOI: 10.11606/t.3.2013.tde-19092014-102819
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Sistema de controle para diagnóstico e tratamento de falhas em dispositivos de assistência ventricular.

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Cited by 1 publication
(3 citation statements)
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“…Numerical results of physical VAD supervisory control system simulation were obtained. Once the modeling and validation of the VAD's control algorithm is performed using HPN and the model is converted to the microcontroller programming language using the procedure of replacing each element of the HPN by elements of the Ladder diagram [24], it enables the implementation of the system and in vitro computational validation, providing an implementation of the device control within a cardiac simulator to validate the computational model. To this end, this algorithm is implemented in the hardware architecture proposed in Figure 9, modeled using the Proteus Design Suite ® software.…”
Section: Numerical Simulationmentioning
confidence: 99%
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“…Numerical results of physical VAD supervisory control system simulation were obtained. Once the modeling and validation of the VAD's control algorithm is performed using HPN and the model is converted to the microcontroller programming language using the procedure of replacing each element of the HPN by elements of the Ladder diagram [24], it enables the implementation of the system and in vitro computational validation, providing an implementation of the device control within a cardiac simulator to validate the computational model. To this end, this algorithm is implemented in the hardware architecture proposed in Figure 9, modeled using the Proteus Design Suite ® software.…”
Section: Numerical Simulationmentioning
confidence: 99%
“…Every effect considered is converted to a node of a BN. Then, following the procedures proposed in [24] this fault diagnosis network can be converted into a PN control model.…”
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confidence: 99%
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