A new mesh free method proposed by the authors was presented, in which the derivatives at each node were constructed using whole derivative formulas through the nodes selected around the node using local Cartesian fra...A new mesh free method proposed by the authors was presented, in which the derivatives at each node were constructed using whole derivative formulas through the nodes selected around the node using local Cartesian frame in an autonomous manner, so that without any element it could be considered as a completely mesh free method. The method was tested with a numerical example, and reliable solution was obtained with high accuracy and efficiency.展开更多
为解决星载资源严格受限条件下,静态随机存取存储器型现场可编程门阵列中块随机存储器(block random access memory,BRAM)的轻量级、高可靠抗辐照加固难题,提出了一种基于分时刷新和位置约束的卫星载荷BRAM抗辐照加固设计方法,通过监控...为解决星载资源严格受限条件下,静态随机存取存储器型现场可编程门阵列中块随机存储器(block random access memory,BRAM)的轻量级、高可靠抗辐照加固难题,提出了一种基于分时刷新和位置约束的卫星载荷BRAM抗辐照加固设计方法,通过监控算法执行时隙实现BRAM分时刷新,并增加位置约束有效降低三模冗余后两模设计同时发生异常的概率,以较少的资源消耗有效提升BRAM在轨抗辐照可靠性。重离子加速试验结果表明,采用分时刷新和位置约束加固方法后,卫星载荷单粒子功能中断截面下降约81.63%,在轨BRAM异常由3颗星2年发生3次减少为25颗星2年未发生,在轨抗辐照可靠性大幅提升。展开更多
基金Project supported by the Nation-al Natural Science Foundation of China(No.10372055)the Shanghai Leading Academic Discipline Project(No.Y0103)
文摘A new mesh free method proposed by the authors was presented, in which the derivatives at each node were constructed using whole derivative formulas through the nodes selected around the node using local Cartesian frame in an autonomous manner, so that without any element it could be considered as a completely mesh free method. The method was tested with a numerical example, and reliable solution was obtained with high accuracy and efficiency.
文摘为解决星载资源严格受限条件下,静态随机存取存储器型现场可编程门阵列中块随机存储器(block random access memory,BRAM)的轻量级、高可靠抗辐照加固难题,提出了一种基于分时刷新和位置约束的卫星载荷BRAM抗辐照加固设计方法,通过监控算法执行时隙实现BRAM分时刷新,并增加位置约束有效降低三模冗余后两模设计同时发生异常的概率,以较少的资源消耗有效提升BRAM在轨抗辐照可靠性。重离子加速试验结果表明,采用分时刷新和位置约束加固方法后,卫星载荷单粒子功能中断截面下降约81.63%,在轨BRAM异常由3颗星2年发生3次减少为25颗星2年未发生,在轨抗辐照可靠性大幅提升。