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1.
向量化算法映射是向量处理器的难点问题。提出一种高效的支持原位计算的三角矩阵乘法向量化方法:将L1D配置为SRAM模式,用双缓冲的乒乓方式平滑多级存储结构的数据传输,使得内核的计算与DMA数据搬移完全重叠,让内核始终以峰值速度运行,从而取得最佳的计算效率;将不规则的三角矩阵乘法计算均衡分布到各个向量处理单元,充分开发向量处理器的多级并行性;将结果矩阵保存在乘数矩阵中,实现原位计算,节省了存储空间。实验结果表明,提出的向量化方法使三角矩阵乘法性能达到1053.7GFLOPS,效率为91.47%。  相似文献   

2.
应用有限元方法,建立了变厚度薄板三角形单元刚度矩阵,给出了变厚度薄板三角形单元形心上的应力和位移计算的数学模型。通过对某型反坦克导弹弹翼进行静力分析和实验比较,表明采用这种模型进行分析合乎结构设计精度要求。  相似文献   

3.
通过分析不同碱性溶液及添加不同活性剂制备出的具有不同金字塔结构的绒面,探讨了影响金字塔成核的因素。采用扫描电镜和紫外一可见分光光度计对绒面的金字塔结构和反射特性进行了分析,结果表明,腐蚀速率与金字塔尺寸成正比,金字塔结构影响绒面减反特性。对造成金字塔结构差异的原因和金字塔成核过程进行了分析。  相似文献   

4.
针对电机的电磁振动噪声问题,发现了提高电机气隙磁密的正弦性不一定能够降低电机的振动噪声。鉴于此,分析了引起电机振动和噪声的主要力波阶次和频率,并探究了气隙磁密3次谐波与电机振动噪声的具体函数关系。为了分析引起电机振动和噪声的主要力波阶次和频率,在利用解析法的基础上排出力波表,确定了主要噪声源。为了探究气隙磁密3次谐波对电机振动噪声的影响,建立了气隙磁密及径向力波的数学模型,并通过遗传算法求解了电机气隙磁密3次谐波的最佳幅值。分析结果显示,提高气隙磁密正弦性不一定能够降低电机振动噪声,气隙磁密3次谐波在一定范围内存在最优值使得电机振动噪声最小。分析结果为低噪声电机的设计提供了参考依据。  相似文献   

5.
针对弹道修正弹的高维非线性特性导致的性能优化难题,改变概念设计阶段传统的串行设计方式,提出了一种基于实验设计(Design Of Experiments,DOE)和响应面(Response Surface Methodology,RSM)的智能优化算法,定义基本的弹丸结构模型以及相关的设计参数.在DOE的基础上,将设计...  相似文献   

6.
采用三角形面积元,提出了一种计算任意形状的细长壳体水声辐射问题的有限元结合边界元解法,推导了三角形面积坐标下的质量矩阵。在水动力方面,根据单层势的概念,提出了声场速度势的边界积分表示式,给出了三角形面积坐标下的附加质量矩阵和附加阻尼矩阵,从而得以建立流固耦合的有限元动力响应方程。本方法的进一步发展可用于计算具有加强肋骨的双层壳体结构的声辐射问题以及船体在随机激励下的远场声功率谱。  相似文献   

7.
由于混合隔振系统中的电磁作动器对电磁力、体积重量、损耗等指标有着严格的限制,因此电磁作动器的优化设计显得十分重要。为此,提出了电磁作动器系统参数(包括几何尺寸参数和电参数)的优化设计方法,推导了电磁作动器总损耗与系统参数间的关系。通过有限元分析软件ANSYS中的优化设计模块,使用ANSYS参数化设计语言建立了在保证电磁力及体积限制条件下,以总损耗最小为目标函数的三维参数化分析模型,多次循环迭代求解后得到了较为优化的系统参数。仿真及实验结果表明:按照该方法设计的电磁作动器能够满足各项设计指标要求,且性能比其他参数下更为优化。  相似文献   

8.
为保证再入飞行器在剧烈变化飞行环境下的控制能力,传统单一气动舵面控制被直\气复合控制模式取代.性能提升同时,多个参与飞行控制的执行机构之间引起的操纵耦合使系统耦合加剧.以再入飞行器为研究重点,分析了直\气复合控制模式下的两类操纵耦合原理,建立数学模型.采用动态逆,模糊理论和变结构方法相结合策略设计鲁棒控制器.仿真结果表明该方法是行之有效的.  相似文献   

9.
《防务技术》2015,11(3)
Friction stir welding using the tools with polygonal pins is often found to improve the mechanical strength of weld joint in comparison to the tools with circular pins. However, the impacts of pin profile on the peak temperature, tool torque and traverse force, and the resultant mechanical stresses experienced by the tool have been rarely reported in a systematic manner. An estimation of the rate of heat generation for the tools with polygonal pins is challenging due to their non-axisymmetric cross-section about the tool axis. A novel methodology is presented to analytically estimate the rate of heat generation for the tools with polygonal pins. A three-dimensional heat transfer analysis of friction stir welding is carried out using finite element method. The computed temperature field from the heat transfer model is used to estimate the torque, traverse force and the mechanical stresses experienced by regular triangular, square, pentagon and hexagon pins following the principles of solid mechanics. The computed results show that the peak temperature experienced by the tool pin increases with the number of pin sides. However, the resultant maximum shear stress experienced by the pin reduces from the triangular to hexagonal pins.  相似文献   

10.
永磁无刷直流直线电机齿槽力补偿控制研究   总被引:1,自引:1,他引:0       下载免费PDF全文
永磁无刷直流直线电机的齿槽定位力对其低速性能影响很大,而单纯的设计方法不可能完全消除齿槽力的影响,为此,必须在控制系统中对齿槽力进行补偿。针对包含齿槽力模型的理想电机控制系统进行了理论分析,指出通过引入位置反馈环节可以消除齿槽力的不良影响。利用有限元分析方法计算了电机的推力和齿槽力波形,验证了低速条件下推力波动主要由齿槽力引起,并说明可以通过位置反馈来补偿推力波动。最后,提出将一个齿槽力周期分为多个区间,然后分段进行线性补偿的简易控制方法。该方法无需高精度的定位装置和复杂的控制算法即可实现对电机齿槽力的补偿,实验结果表明,所提方法能够有效抑制电机的推力波动。  相似文献   

11.
《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   

12.
飞网构型设计对提高空间飞网系统的展开抓捕性能具有重要意义。用小弹性模量分析方法对空间飞网构型优化设计问题进行了研究。以绳网中内力分布均衡性为优化目标,选取飞网抛射过程中最大受力时刻为研究工况,赋予绳索单元极小弹性模量,进行静力学计算,并以变形后的结果为初始条件进行迭代分析。优化结果表明,绳网中的内力分布随迭代步数的增加而更趋于均匀。在不改变绳网拓扑结构的前提下,本文所建立的优化设计方法为空间飞网构型优化设计提供了一种参考途径。  相似文献   

13.
基于虚拟力驱动的传感器网络节点定位   总被引:1,自引:0,他引:1  
为了解决传感器网络节点三边测量定位的全局优化问题,提出了一种基于虚拟力驱动的节点最优相对定位方法。该方法建立了满足节点位置最优最小二乘估计需要的虚拟势能场模型,给出了一种基于虚拟势能场梯度的虚拟力定义新方法,证明了利用该虚拟力驱动节点定位的收敛性,提供了保证节点定位结果全局最优的方法。仿真分析表明,基于虚拟力驱动的节点相对定位方法能够解决节点相对位置的最优估计问题。  相似文献   

14.
Aiming at the problems of demagnetization effect of electromagnetic buffer (EMB) caused by high ve-locity under intensive impact load and the difficulty and error of machining composite thin-walled long tube, a segmented EMB is proposed. The inner tube and air-gap are divided into initial segments and the traversing segments. Through theoretical analysis, impact test and simulation, it can be found that the RRF curve has two peaks. Firstly, in order to reduce the resultant resistance force (RRF) peaks, the sensitivity analysis based on optimal Latin hypercube design (OLHD) and polynomial regression was performed. The results show that the smallest contribution ratio to the dynamic response is the seventh and ninth segments of the inner tube, which are less than 1%. Then, fully considering the uncertain factors, important parameters are selected for uncertain optimization after sensitivity analysis. The in-terval order and interval probability degree methods are used to establish interval uncertain optimiza-tion model of the RRF considering robustness. The model was solved using an interval nested optimization method based on radial basis function (RBF) neural network. Finally, the Pareto front is obtained and numerical simulation is performed to verify the optimal value. It indicates that the two kinds of RRF peak is obviously reduced, and the optimization object and strategy are effective.  相似文献   

15.
基于特征结构配置参数化结果,提出了车辆悬挂系统的主动优化控制器设计方法。该方法直接基于车辆悬挂系统的参数矩阵,便于工程应用。车辆悬挂系统的仿真实例表明所提主动优化控制器设计方法简单且有效。  相似文献   

16.
针对基于DSP的轴角编码器,运用叠加三角波理论提高A/D转换的分辨率。介绍叠加三角波理论,并结合基于DSP的轴角编码器,对三角波信号的参数设置进行研究,从而有效的提高A/D转换的分辨率。利用叠加三角波法加适当的外围电路,与外接高分辨率的ADC芯片相比,具有更高的性价比,较好的满足轴角编码器对A/D转换的需求。  相似文献   

17.
通过实验研究了不同类型的闸刀开关在不同过负荷电流条件下的温度上升情况,测量了闸刀开关在两类过负荷条件下的最高温度以及达到最高温度需要的时间,并对影响闸刀开关温度升高的因素以及达到最高温度时能否引燃周围可燃物进行了分析讨论。实验结果显示,闸刀开关在Ⅱ类过负荷条件下的火灾危险性远大于在Ⅰ类过负荷条件下的火灾危险性。在同类过负荷电流条件下,闸刀开关的额定电流越大,过负荷倍数越大,火灾危险性也越大。  相似文献   

18.
强电磁冲击环境的核心执行机构是线圈,除保障强磁环境发生线圈的电磁特性外,还须确保线圈支架具有充足的机械特性。在完成对线圈磁电设计的基础上,根据线圈的三维结构图、材料配置、质量分布、各零部件之间连接方式以及线圈固定方式等,建立线圈支架结构整体系统有限元计算模型,对线圈支架系统进行静力、稳定性数值计算分析,并校核联接件强度,为线圈支架结构提供参考依据。对实用大型强磁冲击系统所用线圈整体的力学结构进行设计分析,应用背景较新,且仿真计算过程严格按照实际搭建尺寸进行,具有高度的一致性,为后续搭建强磁环境发生装置提供坚实基础。  相似文献   

19.
末敏弹是一种先进的新型弹药,由于其结构复杂,影响因素多,所以对其进行全面的系统优化设计比较困难。文中探讨了基于支持向量机的末敏弹命中概率预报模型的建模方法,并采用遗传算法对系统效能参数进行了优化,获得了影响系统效能的几个主要因素的合理搭配,为末敏弹的系统效能研究提供了依据。  相似文献   

20.
《防务技术》2015,11(3)
Surface modification is essential for improving the service properties of components. Cladding is one of the most widely employed methods of surface modification. Friction surfacing is a candidate process for depositing the corrosion resistant coatings. Being a solid state process, it offers several advantages over conventional fusion based surfacing process. The aim of this work is to identify the relationship between the input variables and the process response and develop the predictive models that can be used in the design of new friction surfacing applications. In the current work, austenitic stainless steel AISI 304 was friction surfaced on high strength low alloy steel substrate. Friction surfacing parameters,such as mechtrode rotational speed, feed rate of substrate and axial force on mechtrode, play a major role in determining the pitting corrosion resistance and bond strength of friction surfaced coatings. Friction surfaced coating and base metal were tested for pitting corrosion by potentiodynamic polarization technique. Coating microstructure was characterized using optical microscopy, scanning electron microscopy and X-ray diffraction. Coatings in the as deposited condition exhibited strain-induced martensite in austenitic matrix. Pitting resistance of surfaced coatings was found to be much lower than that of mechtrode material and superior to that of substrate. A central composite design with three factors(mechtrode rotational speed, substrate traverse speed, axial load on mechtrode) and five levels was chosen to minimize the number of experimental conditions. Response surface methodology was used to develop the model. In the present work, an attempt has been made to develop a mathematical model to predict the pitting corrosion resistance and bond strength by incorporating the friction surfacing process parameters.  相似文献   

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