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91.
92.
针对现有的基于判别型或聚类型的图像,用分割方法无法处理被噪声污染的图像的现状,提出一种新的两步式图像分割框架。该框架首先利用图像的局部信息重塑图像的灰度直方图,增强了像素的类间散布性和类内紧凑性,然后将现有的基于判别型或基于聚类型图像分割方法在重塑图像上执行,从而提高了现有图像分割算法的有效性和鲁棒性。文中用典型的聚类型方法高斯混合模型来说明该框架的可行性。由于框架的两个步骤具有独立性.因此可推广到现有的其他基于像素或直方图的方法。在人工和真实图像上的实验结果证明,这种两步图像分割框架可以获得有效且鲁棒的图像分割结果。 相似文献
93.
移相谐振PWM技术的研究 总被引:1,自引:0,他引:1
本文着重讨论在高频应用场合下的移相零电压谐振PWM 技术,分析移相型谐振变换器、谐振腔电路及定频PWM(脉宽调制)技术中的设计规范。 相似文献
94.
非接触光测物体大位移研究 总被引:1,自引:0,他引:1
提出了一种非接触光学法-单光栅双图像法测量物体位移的新技术,利用两个正交的图像记录系统,在试件作大位移后,记录被平行多光束照射形成的光点所覆盖的试件的图像,借助于记录光路系统几何表数,可建立一联立方程组。解此方程组,就可得到被测物体上诸光点所表示的测点的位移大小和坐标值,文中还论述了度件图上测点位置的确定和修正方法,导出了被测物休图像负片上测点的实际坐标的计算公式,实验结果证明,本文提出的测量理论是正确的。 相似文献
95.
Ma Dongjun Cai Yong Sun Dejun Yin XieyuanDepartment of Modern Mechanics University of Science Technology of China Hefei P.R.China 《南京航空航天大学学报(英文版)》2001,18(Z1)
INTRODUCTIONThe direct numerical simulation of com-pressible multi- fluid flows is an important re-search topic with various key applications.Therelatively dominant difficulty of simulation lies intreatment of the moving material interface. Ingeneral,there are two basic approaches to treatcontact discontinuities.The first,front trackingmethod[1,2 ] ,explicitly characterize the interfacemotion by the motion of individual points on theinterface. The other approach is front capturingmethod[3… 相似文献
96.
97.
可靠性设计优化(RBDO)在航空航天等领域已经被广泛应用,具有显著提高可靠性的效果;然而它包含两个迭代循环-总体优化循环和可靠性分析循环,双循环求解方法效率低下甚至难以承受。本文提出一种可以提高可靠性设计优化求解效率的方法-球空间设计法,该方法可以方便地表达搜索区域,最大可能失效点可以从极值点处精确获取;同时,该方法可以将总体优化以及可靠性分析同步进行。本文所提出的球空间法的有效性将通过2个算例进行测试,测试结果表明该方法不仅精度与同类方法持平,求解效率有明显提升,它将会对提高航空航天装备如卫星、火箭、飞行器等产品的可靠性提供更为有效的方法和技术支持。 相似文献
98.
融合粗糙集与D-S证据理论的航空装备故障诊断 总被引:2,自引:2,他引:2
针对航空电子装备故障诊断中出现的多源诊断信息存在冲突的情况,基于粗糙集与证据理论在处理不确定问题时的优势,提出了一种融合粗糙集与证据理论的故障诊断方法.该方法利用粗糙集将信息源给出的诊断数据转化为证据理论中的mass函数,进行结果融合.同时,该方法给出边界粗糙熵的定义,并基于边界粗糙熵获得反映各信息源在诊断融合过程中重要度的动态权重参数,提出一种新的证据理论的冲突合成规则.仿真实验表明,该方法可以有效地提升诊断信息融合结果的准确性,在航空电子装备故障诊断方面有较好的实用价值. 相似文献
99.
Qile Zhao Jing Guo Zhigang Hu Chuang Shi Jingnan Liu Hua Cai Xianglin Liu 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2011
The GRACE (Gravity Recovery And Climate Experiment) monthly gravity models have been independently produced and published by several research institutions, such as Center for Space Research (CSR), GeoForschungsZentrum (GFZ), Jet Propulsion Laboratory (JPL), Centre National d’Etudes Spatiales (CNES) and Delft Institute of Earth Observation and Space Systems (DEOS). According to their processing standards, above institutions use the traditional variational approach except that the DEOS exploits the acceleration approach. The background force models employed are rather similar. The produced gravity field models generally agree with one another in the spatial pattern. However, there are some discrepancies in the gravity signal amplitude between solutions produced by different institutions. In particular, 10%–30% signal amplitude differences in some river basins can be observed. In this paper, we implemented a variant of the traditional variational approach and computed two sets of monthly gravity field solutions using the data from January 2005 to December 2006. The input data are K-band range-rates (KBRR) and kinematic orbits of GRACE satellites. The main difference in the production of our two types of models is how to deal with nuisance parameters. This type of parameters is necessary to absorb low-frequency errors in the data, which are mainly the aliasing and instrument errors. One way is to remove the nuisance parameters before estimating the geopotential coefficients, called NPARB approach in the paper. The other way is to estimate the nuisance parameters and geopotential coefficients simultaneously, called NPESS approach. These two types of solutions mainly differ in geopotential coefficients from degree 2 to 5. This can be explained by the fact that the nuisance parameters and the gravity field coefficients are highly correlated, particularly at low degrees. We compare these solutions with the official and published ones by means of spectral analysis. It is found that our solutions are, in general, consistent with others in the spatial pattern. The water storage variations of the Amazon, Chari and Ganges river basins have also been computed. The variations computed with the NPARB approach are closer to those produced by JPL and DEOS solutions, while the variations produced with the NPESS approach are in good agreement with those produced by the CSR and GFZ solutions. A simulation study is implemented with considering realistic noise and low-frequency error. The two approaches are used to recover the true model. The NPESS solution appears closer to the true one. Therefore we are inclined to estimate the nuisance parameters simultaneously with the geopential coefficients. 相似文献
100.
In the face of harsh natural environment applications such as earth-orbiting and deep space satellites, underwater sea vehicles, strong electromagnetic interference and temperature stress,the circuits faults appear easily. Circuit faults will inevitably lead to serious losses of availability or impeded mission success without self-repair over the mission duration. Traditional fault-repair methods based on redundant fault-tolerant technique are straightforward to implement, yet their area, power and weight cost can be excessive. Moreover they utilize all plug-in or component level circuits to realize redundant backup, such that their applicability is limited. Hence, a novel selfrepair technology based on evolvable hardware(EHW) and reparation balance technology(RBT) is proposed. Its cost is low, and fault self-repair of various circuits and devices can be realized through dynamic configuration. Making full use of the fault signals, correcting circuit can be found through EHW technique to realize the balance and compensation of the fault output-signals. In this paper, the self-repair model was analyzed which based on EHW and RBT technique, the specific self-repair strategy was studied, the corresponding self-repair circuit fault system was designed, and the typical faults were simulated and analyzed which combined with the actual electronic devices. Simulation results demonstrated that the proposed fault self-repair strategy was feasible. Compared to traditional techniques, fault self-repair based on EHW consumes fewer hardware resources, and the scope of fault self-repair was expanded significantly. 相似文献