A 3D temperature field distribution of biological tissue for superficial hyperthermia using a pulse modulated microwave (PMMW) was presented. A 3D sliced homogeneous phantom was radiated by the PMMW and an infrared ...A 3D temperature field distribution of biological tissue for superficial hyperthermia using a pulse modulated microwave (PMMW) was presented. A 3D sliced homogeneous phantom was radiated by the PMMW and an infrared thermal imager was applied to image temperature distribution throughout the phantom. The period of the PMMW is 3 s and the output power is 35 W. The temperature rises by at least 3 ℃ in the phantom when the duty cycle varies from 1/3, 1/2, 2/3 to 1 (denoted by scenarios 1-4). Both the accumulative temperature-volume histogram and the relative depth-area ratio histogram show that the maximum temperature rise (MTR) is 6.6 and 8 ℃ in scenarios 2 and 3, and they are superior to scenarios 1 and 4. Furthermore, the PMMW can control temperature field distribution of biological tissue. It provides both preliminary basis for thermal volume control and new technology for temperature control and monitor in superficial hyperthermia.展开更多
三维收发(T/R)组件具有小型化、重量轻和可扩充等特点,成为T/R组件技术的重要发展方向之一。本文对一种基于低温共烧陶瓷(LTCC)的Ku波段小型化三维T/R组件进行了研究,通过分析优化组件的垂直微波互连技术、电路布局优化及无源等效模型,...三维收发(T/R)组件具有小型化、重量轻和可扩充等特点,成为T/R组件技术的重要发展方向之一。本文对一种基于低温共烧陶瓷(LTCC)的Ku波段小型化三维T/R组件进行了研究,通过分析优化组件的垂直微波互连技术、电路布局优化及无源等效模型,设计出具有优良电性能(输出功率≥24.5 d Bm,接收增益大于≥25 d B,接收噪声系数≤3.5 d B)的小型化三维T/R组件。该组件利用LTCC高密度布线、球栅阵列(BGA)高密度连接优点,把组件设计成三层层叠结构,并且把部分芯片集成于"多功能芯片",进一步缩小了尺寸,单个组件尺寸为9.5 mm×9.5 mm×3.8 mm,有效实现了T/R组件的小型化。展开更多
基金Project(50977064) supported by the National Natural Science Foundation of China
文摘A 3D temperature field distribution of biological tissue for superficial hyperthermia using a pulse modulated microwave (PMMW) was presented. A 3D sliced homogeneous phantom was radiated by the PMMW and an infrared thermal imager was applied to image temperature distribution throughout the phantom. The period of the PMMW is 3 s and the output power is 35 W. The temperature rises by at least 3 ℃ in the phantom when the duty cycle varies from 1/3, 1/2, 2/3 to 1 (denoted by scenarios 1-4). Both the accumulative temperature-volume histogram and the relative depth-area ratio histogram show that the maximum temperature rise (MTR) is 6.6 and 8 ℃ in scenarios 2 and 3, and they are superior to scenarios 1 and 4. Furthermore, the PMMW can control temperature field distribution of biological tissue. It provides both preliminary basis for thermal volume control and new technology for temperature control and monitor in superficial hyperthermia.
文摘三维收发(T/R)组件具有小型化、重量轻和可扩充等特点,成为T/R组件技术的重要发展方向之一。本文对一种基于低温共烧陶瓷(LTCC)的Ku波段小型化三维T/R组件进行了研究,通过分析优化组件的垂直微波互连技术、电路布局优化及无源等效模型,设计出具有优良电性能(输出功率≥24.5 d Bm,接收增益大于≥25 d B,接收噪声系数≤3.5 d B)的小型化三维T/R组件。该组件利用LTCC高密度布线、球栅阵列(BGA)高密度连接优点,把组件设计成三层层叠结构,并且把部分芯片集成于"多功能芯片",进一步缩小了尺寸,单个组件尺寸为9.5 mm×9.5 mm×3.8 mm,有效实现了T/R组件的小型化。
文摘为了及时发现车辆热轴故障、防止热切轴,保证铁路运输安全,提高运输效率,设计了基于STM32的列车轴温无线监测系统.系统利用热电阻(Pt100)传感器和STM32单片机内置高精度AD转换器实时采集轴温,基于无线射频通信模块(AS01-ML01DP5)实现数据远距离通信,由接收装置显示轴温变化,并进行超限报警.实验测试表明系统工作可靠,测量误差不超过0.5℃,通信距离大约2 km.