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排序方式: 共有1380条查询结果,搜索用时 15 毫秒
861.
能量平衡是微纳卫星电源系统设计和考核的重要要求,在地面通常通过数值仿真进行评价。介绍单板纳星电源系统结构和特点;分别对太阳电池阵、蓄电池组和卫星负载进行数学建模;结合卫星姿态动力学进行能量平衡仿真,仿真结果可以实时反映卫星的功率变化、电池容量和能量平衡情况。电源系统在轨试验数据与仿真结果基本一致,证明所建模型是正确的,仿真方法有效。 相似文献
862.
使用固体姿控小火箭是实现动能拦截器快响应和高精度姿态控制的最佳方案之一。针对一种新型动能拦截器姿控小火箭布局,提出了点火组合混合搜索算法。描述了动能拦截器姿控小火箭的配置方案,分析了弹体自旋需求。设计了一种结合目标排序法和区间搜索法的点火组合混合搜索算法:当可用小火箭个数较少时,采用目标排序法;当可用小火箭个数较多时,采用区间搜索法。指令力矩近似仿真结果及姿态控制数值仿真结果表明:该算法能够有效地近似指令力矩,实现快速高精度的姿态跟踪。 相似文献
863.
Liviu Horovitz 《战略研究杂志》2015,38(1-2):126-158
This article questions the predominantly pessimistic assessments over the future of the Treaty on the Non-Proliferation of Nuclear Weapons (NPT). After analysing available evidence on states’ interests and interactions within the NPT’s framework, it argues that several negative expectations are unwarranted. Conversely, the article identifies three potentially threatening scenarios. Therefore, it scrutinizes the likely impact of reactive nuclear proliferation; analyses the probability of significant actors challenging the existent nuclear architecture; and explores whether the treaty’s enforcement might soon be diluted. The article concludes the NPT is unlikely to face fundamental threats in the foreseeable future. 相似文献
864.
刘多能 《国防科技大学学报》2015,37(4)
平流层飞艇总重最小化能一定程度上反映总费用最低的设计目标,满足有效载荷功率需求是飞艇总体设计的出发点和落脚点。本文在飞艇参数建模中引入了太阳电池曲面铺装模型以及昼夜能源闭环模型;以整艇重量最小为设计目标,以昼夜能源供需平衡、浮重平衡、推阻平衡三大平衡问题为约束条件,运用粒子群优化(PSO)算法对飞艇的外形尺寸参数进行优化设计;分析了有效载荷功率需求和功率密度对于飞艇总体设计结果的敏感性。分析结果表明:(1)飞艇总重随有效载荷功率线性增加;(2)飞艇总重随有效载荷功率密度增加而迅速减小,但变化率逐渐变小,飞艇总重趋于稳定。最后,能源系统仿真的结果表明了飞艇总体设计方法的有效性和设计结果的临界特性。 相似文献
865.
针对浮球式惯性平台系统的标定与初始对准问题,提出了一种基于姿态角的连续翻滚自标定自对准方法。根据浮球平台工作原理,建立了惯性器件误差模型,推导了浮球平台的姿态动力学方程;设计了平台在重力场连续翻滚的施矩方案;利用分段线性定常系统和输出灵敏度理论分析了系统的可观性。仿真结果表明,该方法可以同时实现平台系统42项误差系数的高精度标定与初始对准,有效地提高了系统的测量精度。 相似文献
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870.
《防务技术》2022,18(9):1622-1642
Steel-tube-confined concrete (STCC) targets are provided with excellent anti-penetration performance over semi-infinite concrete (SIC) targets since the steel tube imposes passive restraint on the in-filled concrete during the penetration process. Grid STCC system with square steel tubes is a potential solution to protective structures. In this paper, experiments of 9-cell grid STCC targets penetrated by 12.7 mm Armor Piercing Projectile (APP) were performed. The influence of side length and thickness of steel tube, steel ratio and impact velocity on anti-penetration performance were taken into account. Additionally, single-cell square STCC targets were also designed and tested for comparison with the 9-cell grid STCC targets. Damage modes and parameters of the tested targets were measured and discussed. Moreover, the stiffness of radial confinement of grid STCC targets is achieved according to the elastic solution of infinite cylindrical shell in Winkler medium. Furthermore, the penetration resistance and depth of penetration (DOP) for grid STCC targets are obtained on the basis of the dynamic finite spherical cavity-expansion (FSCE) models including radial confinement effect. It is shown that the 9-cell grid STCC targets with optimal dimension match of thickness and side length of steel tube can reduce the DOP by about 17 % and 23 % in comparison with the SIC targets and single-cell square STCC targets, respectively, due to both the confinement of square steel tube to concrete in the impacted cell and the additional confinement of the surrounding cells to the impacted cell; the penetration resistance and DOP of the grid and cellular STCC targets with similar steel ratio is close, and thus the grid STCC targets with simpler manufacturing process and excellent in-plane expandability are preferred in engineering practice; moreover, the predicted results of DOP model based on the FSCE models agree well with the tested results with the maximum disparity less than 12 % and the proposed model is more applicable to the grid and cellular STCC targets with high radial confinement. 相似文献