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A simple approach to calculate active power of electrosurgical units
Monteiro, André Luiz Regis; Grande, Karin Cristine; Faria, Rubens Alexandre de; Schneider Junior, Bertoldo.
  • Monteiro, André Luiz Regis; Universidade Tecnológica Federal do Paraná. Graduate Program in Electrical Engineering and Industrial Informatics. Curitiba. BR
  • Grande, Karin Cristine; Universidade Tecnológica Federal do Paraná. Graduate Program in Electrical Engineering and Industrial Informatics. Curitiba. BR
  • Faria, Rubens Alexandre de; Universidade Tecnológica Federal do Paraná. Graduate Program in Electrical Engineering and Industrial Informatics. Curitiba. BR
  • Schneider Junior, Bertoldo; Universidade Tecnológica Federal do Paraná. Graduate Program in Electrical Engineering and Industrial Informatics. Curitiba. BR
Res. Biomed. Eng. (Online) ; 32(1): 14-27, Jan.-Mar. 2016. tab, graf
Artigo em Inglês | LILACS | ID: biblio-829464
ABSTRACT
Abstract

Introduction:

Despite of more than a hundred years of electrosurgery, only a few electrosurgical equipment manufacturers have developed methods to regulate the active power delivered to the patient, usually around an arbitrary setpoint. In fact, no manufacturer has a method to measure the active power actually delivered to the load. Measuring the delivered power and computing it fast enough so as to avoid injury to the organic tissue is challenging. If voltage and current signals can be sampled in time and discretized in the frequency domain, a simple and very fast multiplication process can be used to determine the active power. Methods This paper presents an approach for measuring active power at the output power stage of electrosurgical units with mathematical shortcuts based on a simple multiplication procedure of discretized variables – frequency domain vectors – obtained through Discrete Fourier Transform (DFT) applied on time-sampled voltage and current vectors. Results Comparative results between simulations and a practical experiment are presented – all being in accordance with the requirements of the applicable industry standards. Conclusion An analysis is presented comparing the active power analytically obtained through well-known voltage and current signals against a computational methodology based on vector manipulation using DFT only for time-to-frequency domain transformation. The greatest advantage of this method is to determine the active power of noisy and phased out signals with neither complex DFT or ordinary transform methodologies nor sophisticated computing techniques such as convolution. All results presented errors substantially lower than the thresholds defined by the applicable standards.


Texto completo: DisponíveL Índice: LILACS (Américas) Tipo de estudo: Guia de Prática Clínica Idioma: Inglês Revista: Res. Biomed. Eng. (Online) Assunto da revista: Engenharia Biom‚dica Ano de publicação: 2016 Tipo de documento: Artigo País de afiliação: Brasil Instituição/País de afiliação: Universidade Tecnológica Federal do Paraná/BR

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Texto completo: DisponíveL Índice: LILACS (Américas) Tipo de estudo: Guia de Prática Clínica Idioma: Inglês Revista: Res. Biomed. Eng. (Online) Assunto da revista: Engenharia Biom‚dica Ano de publicação: 2016 Tipo de documento: Artigo País de afiliação: Brasil Instituição/País de afiliação: Universidade Tecnológica Federal do Paraná/BR