对智能超声扫描仪发展的贡献:发射机高压电源的设计与分析

IF 2.1 Q2 ENGINEERING, MULTIDISCIPLINARY Inventions Pub Date : 2023-09-03 DOI:10.3390/inventions8050113
Nicolas Daniel Mbele Ndzana, Claude Bernard Lekini Nkodo, Aristide Tolok Nelem, Mathieu Jean Pierre Pesdjock, Yannick Antoine Abanda, Achille Melingui, O. Zeh, Pierre Ele
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引用次数: 0

摘要

智能超声波扫描仪在向护理点成像过渡过程中发挥着重要作用。DC-DC双极转换器在为压电换能器供电时,对产生超声突发信号至关重要。传统的双极转换器具有最小的输出增益和高压应力,并且半导体上较长的占空比产生高的传导损耗并降低系统的效率。发射器电源电压最小,因此必须使用高增益双极转换器。这项拟议的研究涉及开发一种改进的高输出电压增益对称双极DC-DC转换器拓扑,该拓扑可能适用于为智能超声扫描仪发射器供电等应用。所提出的转换器将传统的单端初级电感转换器(SEPIC)与电压倍增器单元(VMC)相结合,以提高电压增益、晶体管占空比、效率和可靠性。本研究描述了所提出的转换器的工作原理。考虑到器件的非理想性,在连续电流模式(CCM)和不连续电流模式下对电压增益进行了分析。在Matlab/Simulink数值环境中对所提出的系统进行了仿真,以验证其特性。实现了原型模型,实验研究验证了理论论证和仿真结果。由于连续输入电流、自平衡双极输出和小部件尺寸的优点,所提出的转换器是智能超声发射器的合适选择。
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Contribution to the Development of a Smart Ultrasound Scanner: Design and Analysis of the High-Voltage Power Supply of the Transmitter
A smart ultrasound scanner plays an important role in the transition to point-of-care imaging. DC–DC bipolar converters are essential in the generation of the ultrasound burst signal as they power the piezoelectric transducer. The conventional bipolar converter has minimal output gain and high-voltage stress, and the longer duty cycle on the semiconductors produces high conduction losses and reduces the efficiency of the system. The transmitter supply voltage is minimal, necessitating the use of high-gain bipolar converters. This proposed study is concerned with the development of an improved high-output voltage gain symmetric bipolar DC–DC converter topology which may be suitable for applications such as powering a smart ultrasound scanner transmitter. The proposed converter combines the conventional single-ended primary inductor converter (SEPIC) with a voltage multiplier cell (VMC) to improve voltage gain, transistor duty cycle, efficiency, and reliability. The present study describes the working principle of the proposed converter. The analysis of the voltage gain is carried out in continuous current mode (CCM) and discontinuous current mode (DCM), taking into account the nonidealities of the device. The simulation of the proposed system is carried out in the numerical environment Matlab/Simulink in order to verify its characteristics. A prototype model is realized and the experimental study presented validates the theoretical arguments and simulations. Due to the advantages of continuous input current, self-balancing bipolar outputs, and small component size, the proposed converter is a suitable choice for smart ultrasound transmitters.
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来源期刊
Inventions
Inventions Engineering-Engineering (all)
CiteScore
4.80
自引率
11.80%
发文量
91
审稿时长
12 weeks
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