IEEE Trans Biomed Eng. 2014 Feb;61(2):381-7. doi: 10.1109/TBME.2013.2279793.
The experimental verification of a novel sensor topology capable of measuring both the position and energy of an electron beam inside a compact electron linear accelerator for radiotherapy is presented. The method applies microwave sensing techniques and allows for the noninterceptive monitoring of the respective beam parameters within compact accelerators for medical or industrial purposes. A state space feedback approach is described with the help of which beam displacements, once detected, can be corrected within a few system macropulses. The proof-of-principle experiments have been conducted with a prototype accelerator and customized hardware. Additionally, closed-loop operation with high accuracy is demonstrated.
提出了一种新颖的传感器拓扑结构的实验验证,该结构能够测量放射治疗用紧凑型电子直线加速器内电子束的位置和能量。该方法应用微波传感技术,允许在用于医疗或工业的紧凑型加速器中对各个光束参数进行非介入式监测。借助状态空间反馈方法,一旦检测到光束位移,就可以在几个系统大脉冲内进行校正。使用原型加速器和定制硬件进行了原理验证实验。此外,还展示了高精度的闭环运行。