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21.
针对以往表面处理过程中槽液管理方面存在的弊端,介绍了质量管理中常用的统计工具——波动图法的应用情况;并摸索、制定了一整套标准化的具有可操作性的槽液管理方法,从而实现了表面处理“槽液动态管理”及其控制程序化。  相似文献   
22.
电波折射误差实时修正方法研究   总被引:1,自引:0,他引:1  
目前的实时弹道处理过程中,由于获得探空气象数据比较困难,电波折射误差均采用各种简化方法进行计算,因而大气折射误差计算的精度不高,修正效果不佳。针对这种现状,本文提出了基于双指数模型的射线瞄迹法计算大气折射误差。试算结果表明,该方法的计算精度与事后数据处理所采用的电波折射误差修正方法相当,且能够满足实时处理的时间要求。  相似文献   
23.
基于CD4046构成的PLL及应用   总被引:1,自引:0,他引:1  
CD4046构成的PLL在通信、频率处理、自动控制等技术领域中应用较为广泛,正确理解CD4046对掌握电路基本组成、原理及应用。对处理实际工程问题有很大帮助。  相似文献   
24.
Recent advances in satellite techniques hold great potential for mapping global gravity wave (GW) processes at various altitudes. Poor understanding of small-scale GWs has been a major limitation to numerical climate and weather models for making reliable forecasts. Observations of short-scale features have important implication for validating and improving future high-resolution numerical models. This paper summarizes recent GW observations and sensitivities from several satellite instruments, including MLS, AMSU-A, AIRS, GPS, and CLAES. It is shown in an example that mountain waves with horizontal wavelengths as short as 30 km now can be observed by AIRS, reflecting the superior horizontal resolution in these modern satellite instruments. Our studies show that MLS, AMSU-A and AIRS observations reveal similar GW characteristics, with the observed variances correlated well with background winds. As a complementary technique, limb sounding instruments like CRISTA, CLAES, and GPS can detect GWs with better vertical but poorer horizontal resolutions. To resolve different parts of the broad GW spectrum, both satellite limb and nadir observing techniques are needed, and a better understanding of GW complexities requires joint analyses of these data and dedicated high-resolution model simulations.  相似文献   
25.
Detonation waves induced by a confined wedge   总被引:2,自引:0,他引:2  
An auto-ignition detonation phenomenon can be initiated by a wedge confined in a channel. A new, self-sustaining, normal detonation wave engine concept is proposed. The detonation processes were numerically modeled with a simplified two-dimensional wedged channel flow that was deemed to emulate a real three-dimensional configuration. The results showed that within certain ranges of incoming flow Mach number or wedge angle, detonation could be self ignited in the channel. The study furthermore investigated the detonation waves based on three different detonation initiation positions. Different configurations of the detonation waves were observed and analyzed. The performance of the different detonation wave configurations was estimated and compared.  相似文献   
26.
To investigate the Mesosphere and Lower Thermosphere (MLT) region, several ground-based instruments called SATI (Spectral Airglow Temperature Imager) were designed and built to measure airglow emission and temperature in the upper mesosphere. One SATI instrument was installed at Resolute Bay (74.7°N, 94.9°W) and has monitored the polar MLT region since November, 2001. In October 2007 another SATI instrument was installed at Eureka (80.0°N, 86.3°W) at the Polar Environment Atmospheric Research Laboratory (PEARL) as part of the Canadian Network for the Detection of Atmospheric Change (CANDAC) project. SATI is a spatial scanning Fabry–Perot spectrometer measuring column emission rates for several rotational lines of OH and O2 airglow at 87 and 94 km height. The rotational temperatures are inferred from the ratios of these lines. The measurements are divided into 12 sectors with an annular field of view. The phase differences between the sectors yield information on the horizontal atmospheric wave direction and wavelength. Horizontal perturbations of 2–8 h period have correlatively been observed and investigated at both locations. Short-periodic oscillations identified as gravity waves with periods between 2 and 8 h propagate in southward and eastward directions, but in opposite directions in some cases. The wave propagation characteristics are often different at the two locations; the relationship with the lower mean wind is considered.  相似文献   
27.
定时误差可使非正弦时域正交调制系统的解调性能显著下降。针对该问题,该文提出了基于保护间隔的定时误差抑制方法。在分析非正弦时域正交调制信号特征的基础上,公式推导了定时误差在相关接收时引起的干扰分量,理论分析了码元间插入保护间隔的定时误差抑制方法的可行性,并进行了仿真验证。结果表明,这种方法可有效的提高系统的误码率性能。该方法尤其适合于对定时误差敏感或精确同步困难的通信系统。  相似文献   
28.
王显煜  孔哲  杨敏 《遥测遥控》2023,44(1):22-29
高超声速飞行器再入地面时,由于飞行器表面等离子体电子密度分布不均匀,因此从背风面向天基中继卫星传输,可避开迎风面的高电子密度,并以Q/V频段为测控频段,经中继卫星转发至地面测控站。本文以波阻抗方法为基础,分析了Q/V频段在不同等离子体参数下的传输特性,并仿真了等离子体对Q/V频段天线波束指向的影响。结果表明:Q/V频段在等离子体中穿透性更好,可在更高的等离子体电子密度和碰撞频率下保持较低的衰减值。但Q/V频段下的天线波束指向偏差较大,随着频段的提高和入射角度的减小,偏差值逐渐减小。因此,应用Q/V频段,通过中继卫星转发实现实时通信,有利于缓解再入飞行器“黑障”现象。  相似文献   
29.
K-M(Keenan-Motley)模型将单墙固定损耗值相加来计算室内无线信号穿透多墙的总损耗值,存在较大误差。针对该问题选取多种室内场景分别进行连续波(Continuous Wave,CW)测试,对无线信号穿墙损耗的影响因素和变化规律进行分析,提出了一种基于人工神经网络的室内无线模型穿墙损耗校正方法,对预处理后的测试数据进行训练并建立预测模型。经验证该预测模型符合校正判别准则,在实际场景下具有良好的预测准确度。  相似文献   
30.
本文介绍了CO2 焊模糊波控逆变电源的原理 ,对其焊接性能与带电子电抗器的平特性逆变电源作了对比研究。结果表明 :模糊波控逆变电源无论在焊接飞溅量 ,焊缝成型及可控性 ,还是在焊接过程的稳定性上都较带电子电抗器的平特性逆变电源有很大的提高。并对其原因进行了探讨  相似文献   
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