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Modeling of a RF Surgical Generator based on a Push-Pull Oscillator

机译:基于推挽式振荡器的RF外科发电机的建模

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To reduce manufacturing costs, a new simple radio frequency (RF) surgical generator based on a push-pull oscillator is developed for cutting tissue. In order to systematically design and test feedback controllers keeping the generator’s output voltage constant, we will present two different models of the considered RF generator. The first one is a nonlinear state space model derived using the generator’s equivalent circuit diagram and Kirchhoff’s laws and the second one is a Hammerstein model. The models are based on physical principles and are successfully validated on a generator prototype, ensuring a good match with the static and dynamic behavior of the considered RF generator. The obtained state space model is well suited to simulate the RF generator, while the Hammerstein model is appropriate to design controllers for the generator’s output voltage.
机译:为了降低制造成本,开发了一种新的简单射频(RF)手术发生器,用于切割组织。为了系统地设计和测试反馈控制器,保持发电机的输出电压常数,我们将呈现两种不同的考虑RF发生器模型。第一个是使用发电机的等效电路图和Kirchhoff的法律导出的非线性状态空间模型,第二个是HammerseIn模型。该模型基于物理原则,并在发电机原型上成功验证,确保了与所考虑的RF发生器的静态和动态行为的良好匹配。所获得的状态空间模型非常适合模拟RF发电机,而Hammersein模型适合于设计用于发电机的输出电压的控制器。

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