通过堆外探测器空间响应函数与反应堆功率分布的内积可得到探测器电流。因此,获得堆外探测器的空间响应函数对堆外探测器电流信号的刻度和修正具有重要意义。本文利用二维输运计算程序DORT和基于ENDF/B-Ⅶ.1制作的多群数据库MATXS-47,...通过堆外探测器空间响应函数与反应堆功率分布的内积可得到探测器电流。因此,获得堆外探测器的空间响应函数对堆外探测器电流信号的刻度和修正具有重要意义。本文利用二维输运计算程序DORT和基于ENDF/B-Ⅶ.1制作的多群数据库MATXS-47,采用求解共轭中子输运方程的方法对压水堆核电厂Indian Point 2的堆外探测器径向空间响应函数进行了计算,计算结果与文献值吻合,表明本文所采用的响应函数计算方法是正确的。展开更多
An efficient hybrid time reversal(TR) imaging method based on signal subspace and noise subspace is proposed for electromagnetic superresolution detecting and imaging. First, the locations of targets are estimated b...An efficient hybrid time reversal(TR) imaging method based on signal subspace and noise subspace is proposed for electromagnetic superresolution detecting and imaging. First, the locations of targets are estimated by the transmitting-mode decomposition of the TR operator(DORT) method employing the signal subspace. Then, the TR multiple signal classification(TR-MUSIC)method employing the noise subspace is used in the estimated target area to get the superresolution imaging of targets. Two examples with homogeneous and inhomogeneous background mediums are considered, respectively. The results show that the proposed hybrid method has advantages in CPU time and memory cost because of the combination of rough and fine imaging.展开更多
文摘通过堆外探测器空间响应函数与反应堆功率分布的内积可得到探测器电流。因此,获得堆外探测器的空间响应函数对堆外探测器电流信号的刻度和修正具有重要意义。本文利用二维输运计算程序DORT和基于ENDF/B-Ⅶ.1制作的多群数据库MATXS-47,采用求解共轭中子输运方程的方法对压水堆核电厂Indian Point 2的堆外探测器径向空间响应函数进行了计算,计算结果与文献值吻合,表明本文所采用的响应函数计算方法是正确的。
基金supported by the National Natural Science Foundation of China(6130127161331007)+2 种基金the Specialized Research Fund for the Doctoral Program of Higher Education of China(2011018512000820120185130001)the Fundamental Research Funds for Central Universities(ZYGX2012J043)
文摘An efficient hybrid time reversal(TR) imaging method based on signal subspace and noise subspace is proposed for electromagnetic superresolution detecting and imaging. First, the locations of targets are estimated by the transmitting-mode decomposition of the TR operator(DORT) method employing the signal subspace. Then, the TR multiple signal classification(TR-MUSIC)method employing the noise subspace is used in the estimated target area to get the superresolution imaging of targets. Two examples with homogeneous and inhomogeneous background mediums are considered, respectively. The results show that the proposed hybrid method has advantages in CPU time and memory cost because of the combination of rough and fine imaging.