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951.
《防务技术》2020,16(3):571-587
Modeling influencing factors of battle damage is one of essential works in implementing military industrial logistics simulation to explore battle damage laws knowledge. However, one of key challenges in designing the simulation system could be how to reasonably determine simulation model input and build a bridge to link battle damage model and battle damage laws knowledge. In this paper, we propose a novel knowledge-oriented modeling method for influencing factors of battle damage in military industrial logistics, integrating conceptual analysis, conceptual modeling, quantitative modeling and simulation implementation. We conceptualize influencing factors of battle damage by using the principle of hierarchical decomposition, thus classifying the related battle damage knowledge logically. Then, we construct the conceptual model of influencing factors of battle damage by using Entity-Relationship approach, thus describing their interactions reasonably. Subsequently, we extract the important influencing factors by using social network analysis, thus evaluating their importance quantitatively and further clarifying the elements of simulation. Finally, we develop an agent-based military industry logistics simulation system by taking the modeling results on influencing factors of battle damage as simulation model input, and obtain simulation model output, i.e., new battle damage laws knowledge, thus verifying feasibility and effectiveness of the proposed method. The results show that this method can be used to support human decision-making and action.  相似文献   
952.
《防务技术》2020,16(4):777-786
In order to study the dynamic response and calculate the axial dynamic coefficient of the monolayer cylindrical explosion vessel, the wall of vessel is simplified as a multi-degree-of-freedom (MDoF) undamped elastic foundation beam. Decoupling the coupled motion equation and using Duhamel's integrals, the solutions in generalized coordinates of the equations under exponentially decaying loads, square wave loads and triangular wave loads are calculated. These solutions are consistent in form with the solutions of single-degree-of-freedom (SDoF) undamped forced vibration simplified model. Based on the model, equivalent MDoF design method (also called MDoF dynamic coefficient method) of cylindrical explosion vessel is proposed. The traditional method can only predict the dynamic coefficient of torus portion around the explosion center, but this method can predict that of the vessel wall at any axial n dividing point position. It is verified that the prediction accuracy of this model is greatly improved compared with the SDoF model by comparing the results of this model with SDoF model and numerical simulation in different working conditions. However, the prediction accuracy decreases as the scaled distance decreases and approaches the end of the vessel, which is related to the accuracy of the empirical formula of the implosion load, the simplification of the explosion load direction, the boundary conditions, and the loading time difference.  相似文献   
953.
《防务技术》2020,16(4):762-776
The cellulosic bast fibers are recognized as a justifiable and biodegradable substitute for producing moderate strength polymer composite materials because of their characteristics of renewability, eco-friendliness, and higher specific strength. Hence the aim of this research work is to fabricate Himalayan bast fibers (Nettle fiber (NF)/bauhinia vahlii fiber (BF)) based mono/hybrid epoxy composites at varying weight percentage of 2–6 wt% and evaluate the physical (void fraction and water absorption), mechanical (tensile strength, flexural strength, hardness) and sliding wear properties of as-fabricated composites. The 6 wt% NBF reinforced composites exhibited higher mechanical properties as compared to NF and BF composites with tensile strength of 34.04 MPa, flexural strength of 42.45 MPa, and hardness of 37.01 Hv respectively. The influence of various control factors (sliding velocity, NF/BF/NBF contents, normal load and sliding distance) on specific sliding wear rate of composites was evaluated by Taguchi (three factors at three levels) experimental design and the percentage contribution of these selected parameters on sliding wear performance was examined by Analysis of variance (ANOVA). The sliding wear property of as-developed composites was found to be greatly influenced by sliding velocity and the wear resistance was observed to be improved with the NF/BF/NBF contents. The wear mechanism of the as-fabricated composites has been elucidated by scanning electron microscopy analysis. The research outcomes demonstrated that the hybridization of Bauhinia vahlii fiber with Nettle fiber led to improve the mechanical and wear properties of epoxy composites.  相似文献   
954.
《防务技术》2020,16(3):617-626
The increasing threat of explosions on the battle field and the terrorist action requires the development of more effective blast resistance materials and structures. Curved structure can support the external loads effectively by virtue of their spatial curvature. In review of the excellent energy absorption property of auxetic structure, employing auxetic structure as core material in curved sandwich shows the potential to improve the protection performance. In this study, a novel cylindrical sandwich panel with double arrow auxetic (DAA) core was designed and the numerical model was built by ABAQUS. Due to the complexity of the structure, systematic parameter study and optimal design are conducted. Two cases of optimal design were considered, case1 focuses on reducing the deflection and mass of the structure, while case2 focuses on reducing the deflection and increasing the energy absorption per unit mass. Parameter study and optimal design were conducted based on Latin Hypercube Sampling (LHD) method, artificial neural networks (ANN) metamodel and the nondominated sorting genetic algorithm (NSGA-Ⅱ). The Pareto front was obtained and the cylindrical DAA structure performed much better than its equal solid panel in both blast resistance and energy absorption capacity. Optimization results can be used as a reference for different applications.  相似文献   
955.
缩比模型试验是获取大型复合材料空间刚架力学特性或响应的一种有效途径,其中一项重要内容是缩比模型设计。以大型复合材料空间刚架为研究对象,阐述已有传统方法的局限性;基于离散相似提出结合有限元方法的方程分析法,利用该方法推导大型复合材料空间刚架静力学响应和动特性的相似关系;利用所提方法设计某复合材料龙骨的1/5缩比模型,并通过试验进行验证。验证结果表明,所提方法和推导的相似关系能够用于指导大型复合材料空间刚架的缩比模型试验。  相似文献   
956.
为便于航迹跟踪控制器设计和分析,引入坐标变换,建立典型的欠驱动无人艇数学模型;建立以航迹上自由点为原点的Serret-Frenet坐标系,实现对航迹跟踪误差变量的描述;通过将航迹参数的更新律作为一附加控制输入,实现了无人艇航迹跟踪控制系统由欠驱动向全驱动控制的转变,并利用改进视线导引算法实现了对无人艇位置的跟踪控制;考虑海流等外界扰动的影响,采用滑模自适应技术分别设计了无人艇航向和航速控制算法,实现了对航向角、纵向速度跟踪误差的镇定;基于李雅普诺夫理论和级联系统理论证明了航迹跟踪控制系统的一致半全局指数和一致全局渐进稳定性。仿真结果表明:所提出的控制算法可在一定程度上处理海流等外界扰动,跟踪效果良好,并且克服了角速度持续激励问题,能够同时实现对直线和曲线航迹的跟踪。  相似文献   
957.
对运动视觉平台点目标定位问题进行了研究,介绍了基于视觉共线方程的目标定位方法,分析了共线方程关于视线约束的实质。在观测视线相关坐标系推导了视线方向角矢量对目标定位误差的影响规律,分析了多观测对定位误差的影响,并基于最小化目标定位误差推导了视觉平台的最优运动轨迹,利用简单明了的分析方法得到了与已有文献优化Fisher信息矩阵方法一致的结论。利用仿真和试验对定位误差和最优轨迹进行了验证,证实了定位误差理论分析和最优运动轨迹设计的正确性。  相似文献   
958.
在分析了传统舰炮武器系统对岸射击方法存在的问题和局限性基础上,提出了基于GPS下大地主题坐标系下Boring定位数学模型,并做了精度分析,与现有的方法相比,具有较高的定位精度。之后提出了通过解弹道方程组求解射击诸元的思想方法,与其他文献的方法相比,在迭代方法上作了改进,提高了精度,采用DSP技术,提高了解算速度,确保解的实时性。最后作了模拟仿真及精度分析,结果表明,方法可行,为舰炮对岸射击问题提供了新的思路。  相似文献   
959.
分析了几个影响坦克威胁程度的主要因素,采用新的归一化效用函数法,对各目标的威胁程度进行评估,确定智能子母弹的攻击瞄准点.然后建立智能子母弹对目标攻击过程的数学模型及毁伤概率的计算模型,通过蒙特卡洛方法计算各目标命中的子弹数目.综合目标的特性进行多次仿真,得出了子母弹对整个坦克群目标的作战效能.最后模拟实现了整个攻击过程...  相似文献   
960.
云南省是跨境民族多、贫困人口多、山村面积大的边疆省份。由于其特殊的地理位置和所处环境,历来既是中国边疆危机的前沿阵地,又是国防前线和战略要冲。跨境民族常年居住在边界两侧,对边境情况较为熟悉,经常在国境线两侧出入,从而加大了边境管理的难度,影响了边境管理的有效性和有序性。这一现象应引起边境管理部门的高度重视。  相似文献   
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