作者单位
摘要
1 西京学院, 西安 710123
2 空军工程大学装备管理与无人机工程学院, 西安 710051
针对步进加速退化试验中具有性能退化趋势的随机退化设备,采用非线性Wiener过程,建立与设备退化特征相符的步进加速退化模型;采用极大似然估计(MLE)法,求解出先验参数估计值;利用目标设备当前监测数据,基于贝叶斯方法更新随机系数后验分布;利用全概率公式,推导考虑随机系数估计不确定性的设备剩余寿命分布;通过算例分析验证了所提方法的正确性和优势。
剩余寿命预测 加速退化建模 非线性Wiener过程 随机系数 测量误差 RUL prediction accelerated degradation modeling nonlinear Wiener process random coefficient measurement error 
电光与控制
2019, 26(7): 75
Author Affiliations
Abstract
1 Department of Advanced Interdisciplinary Sciences, Utsunomiya University, Yohtoh 7-1-2, Utsunomiya 321-8585, Japan
2 CORE (Center for Optical Research and Education), Utsunomiya University, Yohtoh 7-1-2, Utsunomiya 321-8585, Japan
3 School of Computer Engineering and Sciences, Shanghai University, Shanghai 200444, China
4 Institute of Modern Physics, Fudan University, Shanghai 200433, China
5 Department of Physics, National University of Defense Technology, Changsha 410073, China
6 Institute of Physics, Chinese Academy of Sciences, Beijing 100080, China
An ion beam has the unique feature of being able to deposit its main energy inside a human body to kill cancer cells or inside material. However, conventional ion accelerators tend to be huge in size and cost. In this paper, a future intenselaser ion accelerator is discussed to make the laser-based ion accelerator compact and controllable. The issues in the laser ion accelerator include the energy efficiency from the laser to the ions, the ion beam collimation, the ion energy spectrum control, the ion beam bunching, and the ion particle energy control. In the study, each component is designed to control the ion beam quality by particle simulations. The energy efficiency from the laser to ions is improved by using a solid target with a fine sub-wavelength structure or a near-critical-density gas plasma. The ion beam collimation is performed by holes behind the solid target or a multi-layered solid target. The control of the ion energy spectrum and the ion particle energy, and the ion beam bunching are successfully realized by a multi-stage laser–target interaction.
Intense short-pulse laser laser ion acceleration laser ion cancer therapy laser–plasma interaction 
High Power Laser Science and Engineering
2014, 2(1): 010000e4

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