排序方式: 共有205条查询结果,搜索用时 15 毫秒
201.
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。 相似文献
202.
不可恢复异常比特位(unrecoverable-sensitive bits, UR-SB)不能通过定时刷新修复,会造成卫星载荷在轨服务的长时间中断,是地面故障注入试验需要着重评估和改善的。但UR-SB占比极低,若采用传统逐位翻转故障注入方法,其测试耗时太长,效率极低。提出了一种基于整帧翻转的静态随机存取存储器型现场可编程门阵列的故障注入加速算法,其通过整帧翻转能够快速筛除不存在UR-SB的配置帧,并进一步用二分法对存在UR-SB的配置帧进行快速搜索,有效加速了UR-SB的精确定位过程。以在轨常用XQR2V3000器件为例,理论分析在较差情况下测试效率可提升207倍,信号生成载荷实测结果最高可提升949倍,理论分析和实测结果均验证了所提加速算法的有效性。 相似文献
203.
火箭发动机应储数量的确定是其维修保养工作中的一个重要问题。在满足一定精度的前提下,以可靠性评估为中心研究寿命服从逆威布尔分布的火箭发动机的应储数量问题。在具有二项移走的逐步增加I型区间截尾模型下(被随机移走的产品数目服从二项分布),采取不同方案给出决定火箭发动机寿命的关键性参数的可靠性估计,据此确定其应储数量。最后,通过随机模拟方法给出在一定精度指标下火箭发动机的应储数量。 相似文献
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205.
The elliptical cross-section ogive-nose projectile (ECOP) has recently attracted attention because it is well suited to the flattened shape of earth-penetrating weapons. However, the penetration performance of ECOPs has not been completely understood. The objective of this study was to investigate the pene-tration performance of ECOPs into concrete targets using a theoretical method. A general geometric model of ECOPs was introduced, and closed-form penetration equations were derived according to the dynamic cavity-expansion theory. The model was validated by comparing the predicted penetration depths with test data, and the maximum deviation was 15.8%. The increment in the penetration depth of the ECOP was evaluated using the proposed model, and the effect of the major—minor axis ratio on the increment was examined. Additionally, the mechanism of the penetration-depth increment was inves-tigated with respect to the caliber radius head, axial stress, and resistance. 相似文献