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Arbitrary waveform generation based on phase and amplitude synthesis for switched mode excitation of ultrasound imaging arrays

机译:基于相位和幅度合成的超声成像阵列开关模式激励的任意波形生成

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摘要

The implementation of miniaturised excitation circuitry in portable systems and transducer integrated front ends is challenging due to the requirements for high voltage and high current generation. Arbitrary excitation performed using digital to analog converters and high specification amplifiers cannot be easily miniaturised. Switched excitation circuitry can easily miniaturised but requires careful waveform design to achieve arbitrary excitation. Previously, Harmonic Reduction Pulse Width Modulation (HRPWM) has been proposed to allow the design of low harmonic content switched mode excitation signals through a parameterized design process. This paper proposes the technique arbitrary-HRPWM (AHRPWM) to allow the synthesis of three and five level true arbitrary switched mode excitation waveforms. The technique is demonstrated through the design and evaluation of linear frequency modulated waveforms that have been pre-distorted to compensate for transducer characteristics. After simulating the transducers response the resulting switched mode waveforms show am 0.06% amplitude error in the time domain compared to the amplified analog waveform and -45 dB and -35 dB third harmonic powers for the three and five level switched mode waveforms respectively.
机译:由于对高电压和高电流的需求,在便携式系统和传感器集成前端中实现小型化激励电路具有挑战性。使用数模转换器和高规格放大器执行的任意激励不能轻易地小型化。开关励磁电路可以轻松实现小型化,但需要精心设计波形以实现任意励磁。以前,已提出谐波减小脉冲宽度调制(HRPWM),以允许通过参数化设计过程来设计低谐波含量的开关模式激励信号。本文提出了一种任意HRPWM(AHRPWM)技术,可以合成三级和五级真正的任意开关模式激励波形。通过设计和评估线性调频波形已证明了该技术,这些波形已经过预失真以补偿换能器特性。在模拟换能器响应之后,与放大后的模拟波形相比,所得的开关模式波形在时域中显示出0.06%的幅度误差,对于三级和五级开关模式波形,其分别为-45 dB和-35 dB的三次谐波功率。

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