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Incorporation of diffraction effects in simulations of ultrasonic systems using PSpice models

机译:在使用PSpice模型的超声系统模拟中纳入衍射效应

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摘要

The use of PSpice models for piezoelectric devices and ultrasonic transmission media is of major importance in the design of electronics for ultrasonic systems. Today, these models include viscoelastic loss but disregard loss due to diffraction, i.e. beam spreading. This paper presents a method to include diffraction loss in PSpice simulations of ultrasonic systems. The conductive loss in the transmission line, that models the propagation media of the ultrasound pulse, is used to model the loss due to diffraction. Parameter variations for the piezoelectric device can affect the result greatly. Thus, a sensitivity analysis for the simulation model is presented. Measurements and simulations have been performed using a pulse echo system in water. Maximum distance to the reflector was 200 mm. The piezoelectric devices used were PZ-27 crystals with diameters 6 mm and 12 mm, with a center frequency of 4 MHz. Results show that the simulated amplitude of the echo follows measured values well in both near and far fields, with an offset of about 10%
机译:PSpice模型在压电设备和超声传输介质中的使用在超声系统电子设计中至关重要。如今,这些模型包括粘弹性损耗,但忽略了由于衍射(即光束扩展)引起的损耗。本文提出了一种在超声系统的PSpice模拟中包括衍射损耗的方法。用于模拟超声脉冲传播介质的传输线中的传导损耗,用于模拟由于衍射引起的损耗。压电器件的参数变化会极大地影响结果。因此,提出了对仿真模型的敏感性分析。在水中使用脉冲回波系统进行了测量和模拟。到反射镜的最大距离是200毫米。所使用的压电器件是直径为6 mm和12 mm的PZ-27晶体,中心频率为4 MHz。结果表明,在近场和远场中,模拟的回波幅度都很好地遵循了测量值,偏移约为10%

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