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A simple approach to calculate active power of electrosurgical units

机译:一种计算电外科单元有功功率的简单方法

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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 a?? frequency domain vectors a?? 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 a?? 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.
机译:简介:尽管进行了一百多年的电外科手术,但只有少数几家电外科设备制造商开发了用于调节输送给患者的有功功率的方法,通常在任意设定值附近。实际上,没有制造商能够测量​​实际传递给负载的有功功率。测量所输送的功率并对其进行足够快的计算以免损坏有机组织具有挑战性。如果可以及时对电压和电流信号进行采样并在频域中进行离散化,则可以使用简单且非常快速的乘法过程来确定有功功率。方法本文提出了一种基于离散变量a?的简单乘法过程,利用数学捷径来测量电外科设备输出功率级有功功率的方法。频域向量通过离散傅里叶变换(DFT)应用于时间采样的电压和电流矢量获得。结果给出了模拟与实际实验之间的比较结果。全部符合适用行业标准的要求。结论提出了一种分析,该分析将通过众所周知的电压和电流信号解析获得的有功功率与基于矢量操纵的计算方法进行了比较,该方法仅使用DFT进行时频转换。该方法的最大优点是,既无需使用复杂的DFT或普通的转换方法,也无需使用复杂的计算技术(例如卷积)来确定有噪声和逐步淘汰的信号的有功功率。所有结果均显示误差大大低于适用标准所定义的阈值。

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