基于双频微波固态源的热消融系统设计研究

      Design and Research of Thermal Ablation System Based on Dual-frequency Microwave Solid State Source

      • 摘要: 微波热消融技术以其微创、副作用小的优点被广泛应用于肝肿瘤的治疗。热剂量的精准控制在很大程度上决定了微波热消融的治疗效果。然而,目前基于磁控管的微波热消融仪具有功率输出稳定性欠佳、工作电压较高的缺点。针对以上问题,该文选择微波固态源作为微波输出的核心器件,设计了一套基于2 450 MHz和433 MHz的双频微波热消融系统,系统利用功率检测电路对系统实际输出功率进行PID反馈控制。实验结果表明系统输出功率最大误差小于1 W,PID算法在提高系统安全性的同时进一步增强了系统输出功率的准确性与稳定性。该文设计的双频微波热消融系统可以为后续的研究提供一个安全可靠的实验平台。

         

        Abstract: Microwave thermal ablation technology is widely used in the treatment of liver tumors because of its minimal invasiveness and small side effects. The precise control of the thermal dose largely determines the therapeutic effect of microwave thermal ablation. However, the current magnetron-based microwave thermal ablation device has the disadvantages of poor power output stability and high operating voltage. In view of the above problems, this paper selected the microwave solid-state source as the core device of microwave output, and designed a dual-frequency microwave thermal ablation system based on 2 450 MHz and 433 MHz. The system used the power detection circuit to perform PID feedback control on the actual output power of the system. The experimental results show that the maximum output power of the system is less than 1 W. The PID algorithm further enhances the accuracy and stability of the system output power while improving the system security. The dual-frequency microwave thermal ablation system designed in this paper can provide a safe and reliable experimental platform for subsequent research.

         

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