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491.
提出了面向最大值指标的截尾正态分布精度换算方法,为最大值指标与常用精度指标间的精度换算以及真值测量系统精度指标的确定提供了参考依据。该方法假设系统输出序列中各观测点的合格概率服从对数截尾正态分布;根据给定最大值指标的置信水平及序列样本量,证明并推导了截尾正态分布之截尾上限、截尾下限、均值及标准偏差的计算公式,导出了最大值精度指标与1σ等常用精度指标间的换算关系;结合精密仪器有关理论给出了最大值指标下真值测量系统精度指标的确定方法。实例应用的实验结果表明,该方法是可行的。  相似文献   
492.
神经网络架构搜索旨在针对不同任务,自动化地搜索得到性能最优的神经网络结构,是深度学习、计算机视觉技术结合当前现实需求应运而生的一大重要科学问题。对近年来神经网络架构搜索研究进行梳理、归类和评述;阐述神经网络架构搜索的定义和意义,全方位剖析当前研究所面临的难点与挑战;以此为基础,对主流的搜索策略进行阐述和归纳;探讨研究潜在的问题及未来颇具潜力的研究方向,以期推动该领域的进一步发展。  相似文献   
493.
可持续发展已成为全球和地区经济发展的热点,对敦煌这样一个地处生态环境脆弱区且又正处于旅游发展成熟期的旅游地来说,探讨其可持续发展具有重要的战略意义。本文通过实地考察、对历年统计数据和调查问卷的分析,总结了敦煌旅游业发展概况,用SWTO分析法详细分析了敦煌旅游业发展现状的优势、弱点、机会与威胁,最后探讨了其可持续发展战略与对策,为敦煌旅游业的快速、持续、稳定发展提供参考。  相似文献   
494.
系统地研究了Sr2FeNbO6的晶体结构,并利用步进扫描的X光数据成功地确定了Sr2FeNbO6的晶体结构,利用Rietveld方法精修出Sr2FeNbO6是空间群为Pnma(62)的正交结构,其中,晶胞参数分别为a=5.616 1A,b=7.971 7A,c=5.613 0A.  相似文献   
495.
系统地研究了双钙钛矿结构氧化物Sr2FeMo1-xNbxO6中Mo位的Nb替代效应,发现Nb替代Mo可强烈抑制Sr2FeMoO6的金属导电性,并大大提高掺杂样品的电阻值和庞磁电阻特性,在5K下,Sr2FeMo0.6Nb0.4O6的庞磁电阻分别达到23%(1T)和31%(3T),在室温下,Sr2FeMo0.75Nb0.25O6的磁电阻分别达到4%(1T)和6%(3T).  相似文献   
496.
We consider a setting in which inventory plays both promotional and service roles; that is, higher inventories not only improve service levels but also stimulate demand by serving as a promotional tool (e.g., as the result of advertising effect by the enhanced product visibility). Specifically, we study the periodic‐review inventory systems in which the demand in each period is uncertain but increases with the inventory level. We investigate the multiperiod model with normal and expediting orders in each period, that is, any shortage will be met through emergency replenishment. Such a model takes the lost sales model as a special case. For the cases without and with fixed order costs, the optimal inventory replenishment policy is shown to be of the base‐stock type and of the (s,S) type, respectively. © 2012 Wiley Periodicals, Inc. Naval Research Logistics, 2012  相似文献   
497.
水面舰艇反潜是提高自身防护力的重要措施.针对水面舰艇单舰反潜作战能力问题,在分析影响水面舰艇反潜的搜索、攻击、防御3个重要因素的基础上,建立了反潜作战能力评估指标体系,并引进灰色层次分析法,构建了评估模型,通过实例验证了模型的可行性.  相似文献   
498.
Impact velocity (v0), target strength (fc) and target thickness (hc) are important factors affecting opening damage ((D)) of PELE penetration into RC target. In this paper, based on the three influence factors of v0, fc and hc, experimental and numerical simulation studies on PELE penetration into RC target were carried out. The study results show that: (1) Since interaction force (or penetration resistance) between pro-jectile and target is positively correlated with v0 and fc, with the increase of v0 and fc, deformation mode of jacket is changed from small bending deformation to large bending deformation and then to curling deformation. Therefore, the variation of jacket deformation mode causes opening diameter of RC target to increase first and then to decrease. It is found that the two factors approximately satisfy a quadratic function relationship, respectively. (2) For PELE projectile penetrating RC targets with thickness of 80—400 mm, the opening diameter of six sets of RC targets grows from 240 to 500 mm, and hc with (D) approximately satisfy a linear relationship. (3) Based on the above study results, the relationship be-tween two dimensionless parameters (I= (mv20/d31fc) and H= hc/l ) and dimensionless opening diameter ((D)/d1) was determined. Combined with the results of previous research, a dimensionless opening diameter model (D)/d1=f1(Q,G,I)f2(H) was established. By tests verified, the test results are all within ±10%error of the theoretical model, which verifies the accuracy of the model.  相似文献   
499.
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   
500.
Presented herein is an experimental study on the combustion of B4C/KNO3 binary pyrotechnic system.Combustion products were tested using X-ray diffraction(XRD),scanning electron microscopy(SEM),and energy dispersive spectrometer(EDS).According to the results of tests and CEA calculation,the combustion reaction equation was established.The flames and burning rates were recorded by a high speed camera and a spectrophotometer.The effect of B4C particle size on the thermal sensitivity of B4C/KNO3 was investigated by differential scanning calorimetry(DSC)techniques.In addition,a reliable method for calculating the flame temperature was proposed.Based on the results of experiments,the combustion reaction mechanism was briefly analyzed.The burning rate,flame temperature and thermal sensitivity of B4C/KNC3 increase with the decrease of B4C particle size.The mass ratio of B4C/KNO3 has a great effect on combustion properties.Oxidizer-rich compositions have low flame temperatures,low burning rates,and provide green light emission.The combustion reactions of fuel-rich compositions are vigorous,and the B4C/KNO3 with mass ratio of 25:75 has the highest burning rate and the highest flame temperature.  相似文献   
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