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Medical Ultrasound Power Measurement System using PVDF Sensor and FPGA Technology

机译:医疗超声波功率测量系统采用PVDF传感器和FPGA技术

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This work deals with the development of ultrasound power measurement system on Field Programmable Gate Array (FPGA) platform. Polyvinylidene Fluoride (PVDF) was employed to sense medical ultrasonic signal. PVDF film's behavior and its electro-acoustic model were observed. Signal conditioner circuit was then described. Next, a robust low-cost casing for PVDF sensor was built, followed by the proposal of the use of digital-system ultrasound processing algorithm. The simulated sensor provided 2.5 MHz to 8.5 MHz response with output amplitude of around 4 Vpp. Ultrasound analog circuits, after filtering and amplifying, provided frequency range from 1 MHz until 10 MHz with -5 V to +5 V voltage head-rooms to offer a wideband medical ultrasonic acceptance. Frequency from 500 kHz to 10 MHz with temperature span from 10 °C to 50 °C and power range from 1 mW/cm~2 up to 10 W/cm~2 (with resolution 0.05 mW/cm~2) had been expected by using the established hardware. The test result shows that the platform is able to process 10 us ultrasound data with 20 ns time-domain resolution and 0.4884 mVpp magnitude resolutions. This waveform was then displayed in the personal computer's (PCs) graphical user interface (GUI) and the calculation result was displayed on liquid crystal display (LCD) via microcontroller. The whole system represents a novel design of low-cost ultrasound power measurement system with high-precision capability for medical application. This may improve the existing power meters which have intensity resolution limitation (at best combination, of all products, utilize: 0.25 MHz - 10 MHz frequency coverage; 10 °Cto 30 °C working temperature; 0 W/cm~2 - 30 W/cm~2 power range; 20 mW/cm~2 resolution), neither having mechanism to handle the temperature disturbance nor possibility for further data analysis.
机译:这项工作涉及现场可编程门阵列(FPGA)平台上超声波功率测量系统的开发。使用聚偏二氟乙烯(PVDF)感测医用超声信号。观察到PVDF薄膜的行为及其电声模型。然后描述信号调节器电路。接下来,建立了一种用于PVDF传感器的强大低成本套管,然后建议使用数字系统超声处理算法。模拟传感器提供2.5 MHz至8.5 MHz响应,输出幅度约为4 VPP。超声模拟电路,过滤和放大后,频率范围为1 MHz,直到10 MHz,带-5 V至+5 V电压头部,提供宽带医疗超声波验收。从500kHz到10 MHz的频率,温度跨度从10°C到50°C,功率范围为1 mW / cm〜2,最高可达10个w / cm〜2(分辨率0.05 mw / cm〜2)使用已建立的硬件。测试结果表明,该平台能够处理10个US超声数据,其中20NS时域分辨率和0.4884 MVPP幅度分辨率。然后将该波形显示在个人计算机(PC)图形用户界面(GUI)中,通过微控制器在液晶显示器(LCD)上显示计算结果。整个系统代表了具有高精度医学应用的低成本超声功率测量系统的新颖设计。这可以改善现有的功率计,具有强度分辨率限制(以最佳组合,所有产品,利用:0.25MHz - 10 MHz频率覆盖; 10°C至30°C工作温度; 0 W / cm〜2 - 30 W / CM〜2功率范围; 20 MW / cm〜2分辨率),既不具有机制处理温度干扰,也不是进一步数据分析的可能性。

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