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51.
基于FPGA的高准确度数字频率信号源设计   总被引:2,自引:0,他引:2  
介绍了直接数字频率合成技术的实现方法,分析了其优越的技术特性。根据其特性,利用FPGA设计了高准确度的数字频率信号源。仿真结果表明,与传统的信号源相比,使用该方法实现的信号源,其信号种类多,准确度高,满足测试设备数字化、软件化的趋势。  相似文献   
52.
本文是对空间机器人由地面站遥控操纵在空间抓物实验方案的仿真研究,它是在图形计算机工作站上用C语言编程实现的。视景化仿真描绘了自由飞行物与机器人之间的相对运动,考虑了空间站与地面站信息传输延迟的影响,用扩展的卡尔曼滤波实现了机器人对自由飞行物的自动跟踪,人在地面站观测预报的机器人和目标物的立体图象,可以经操纵球控制机械手运动。仿真结果表明,该方案对进一步研究有很好的参考价值。  相似文献   
53.
在深航近年来使用的承修商管理模式的基础上,通过实践不断修正,新增可视化质量评估平台,使深航的承修商管理形成一个完整的闭环监控,本文对这一可视化质量评估模型进行了详细介绍,以期为业内航材承修商管理工作提供参考。  相似文献   
54.
For the performance issues of satellite transceivers suffering passive intermodulation interference,a novel and effective digital suppression algorithm is presented in this paper.In con trast to analog approaches,digital passive intermodulation (PIM) suppression approaches can be easily reconfigured and therefore are highly attractive for future satellite communication systems.A simplified model of nonlinear distortion from passive microwave devices is established in consid eration of the memory effect.The multiple high-order PIM products falling into the receiving band can be described as a bilinear predictor function.A suppression algorithm based on a bilinear poly nomial decorrelated adaptive filter is proposed for baseband digital signal processing.In consideration of the time-varying characteristics of passive intermodulation,this algorithm can achieve the rapidness of online interference estimation and low complexity with less consumption of resources.Numerical simulation results show that the algorithm can effectively compensate the passive intermodulation interference,and achieve a high signal-to-interference ratio gain.  相似文献   
55.
《中国航空学报》2021,34(6):1-17
Corundum abrasives with good chemical stability can be fabricated into various free abrasives and bonded abrasive tools that are widely used in the precision machining of various parts. However, these abrasives cannot satisfy the machining requirements of difficult-to-machine materials with high hardness, high strength, and strong wearing resistance. Although superhard abrasives can machine the above-mentioned materials, their dressing and manufacturing costs are high. By contrast, ceramic corundum abrasives fabricated by sol–gel method is a cost-effective product between conventional and superhard abrasives. Ceramic corundum abrasives exhibit self-sharpening and high toughness. In this review, the optimization methods of ceramic corundum abrasive properties are introduced from three aspects: precursor synthesis, particle shaping, and sintering. Firstly, the functional mechanism of seeds and additives on the microstructural and mechanical properties of abrasives is analyzed. Specifically, seeds can reduce the phase transition temperature and improve fracture toughness. The grain size and uniformly dense structure can be controlled by applying an appropriate amount of multicomponent additives. Then, the urgent need of engineering application and machinability of special shape ceramic corundum abrasives is reviewed, and three methods of abrasive shaping are summarized. The micromold replication technique is highly advanced and can be used to prepare functional abrasives. Additionally, the influence of a new sintering method, namely, two-step sintering technique, on the microstructural and mechanical performance of ceramic corundum abrasives is summarized. Finally, the challenge and developmental trend of the optimization of ceramic corundum abrasives are prospected.  相似文献   
56.
《中国航空学报》2016,(2):560-570
Single-crystal superalloys are typical advanced materials used for manufacturing aeroengine turbine blades. Their unique characteristics of high hardness and strength make them exceedingly difficult to machine. However, a key structure of a turbine blade, the film-cooling hole,needs to be machined in a single-crystal superalloy; such machining is challenging, especially considering the increasing levels of machining efficiency and quality demanded by the aeroengine industry. Tube electrode high-speed electrochemical discharge drilling(TSECDD), a hybrid technique of high-speed electrical discharge drilling and electrochemical machining, provides high machining efficiency and accuracy, as well as eliminating the recast layer. In this study, TSECDD is used to machine a film-cooling hole in a nickel-based single-crystal superalloy(DD6). The Taguchi methods of experiment are used to optimise the machining parameters. Experimental results show that TSECDD can effectively drill the film-cooling hole; the optimum parameters that give the best performance are as follows: pulse duration: 12 ls, pulse interval: 30 ls, peak current:6 A, and salt solution conductivity: 3 m S/cm. Finally, a hole is machined by TSECDD, and the results are compared with those obtained by electrical discharge machining. TSECDD is found to be promising for improving the surface quality and eliminating the recast layer.  相似文献   
57.
基于无人机模拟飞行的虚拟视景显示技术是三维可视化显示研究的一个重点,虚拟视景实时同步显 示是三维可视化实现中必须解决的一个难题。本文分析了实现无人机模拟飞行三维虚拟视景系统的基本结构、 实现过程以及显示方式,提出了无人机模拟飞行三维虚拟视景可视化空间信息动态同步、多方位、多视角的显 示方式及显示的关键技术。  相似文献   
58.
《中国航空学报》2020,33(12):3027-3038
Hypersonic and high-enthalpy wind tunnels and their measurement techniques are the cornerstone of the hypersonic flight era that is a dream for human beings to fly faster, higher and further. The great progress has been achieved during the recent years and their critical technologies are still in an urgent need for further development. There are at least four kinds of hypersonic and high-enthalpy wind tunnels that are widely applied over the world and can be classified according to their operation modes. These wind tunnels are named as air-directly-heated hypersonic wind tunnel, light-gas-heated shock tunnel, free-piston-driven shock tunnel and detonation-driven shock tunnel, respectively. The critical technologies for developing the wind tunnels are introduced in this paper, and their merits and weakness are discussed based on wind tunnel performance evaluation. Measurement techniques especially developed for high-enthalpy flows are a part of the hypersonic wind tunnel technology because the flow is a chemically reacting gas motion and its diagnosis needs specially designed instruments. Three kinds of the measurement techniques considered to be of primary importance are introduced here, including the heat flux sensor, the aerodynamic balance, and optical diagnosis techniques. The techniques are developed usually for conventional wind tunnels, but further improved for hypersonic and high-enthalpy tunnels. The hypersonic ground test facilities have provided us with most of valuable experimental data on high-enthalpy flows and will play a more important role in hypersonic research area in the future. Therefore, several prospects for developing hypersonic and high-enthalpy wind tunnels are presented from our point of view.  相似文献   
59.
吉时利2750在真空热试验测量系统中的应用   总被引:1,自引:1,他引:0  
真空热试验测量系统是空间环境模拟设备的重要分系统.文章对真空热试验测量需求进行了简单介绍,对采用吉时利2750数字多用表实现的1000点测量系统进行了说明,主要包括:测量系统的结构设计和通讯方式选择、测量信号输入多路转换开关的选择、测量信号输入分线箱设计,提出了一种多主机并行的快速测量方法,并给出了测量参数.应用结果表明:该系统运行稳定可靠,测量数据准确无误.  相似文献   
60.
智能铁路装备是一个典型的分布式物联系统,具有大量复杂的数据交互共享的需求与场景,装备及其产生的数据信令在系统中的数字身份标识是其重要安全基础。应用基于区块链去中心化的分布式数字身份标识技术,结合北斗时空信息,设计了铁路装备身份标识(railway decentralized identifier, RDID)可信数字身份服务,包括服务架构、生成流程、流转流程和验证流程,并进行了应用模型实现与效能分析。服务可以有效提升装备及其产生的数据信令的规范安全性,保证标识身份全局唯一,可追溯认证,从而提高智能装备系统通信过程数据的完整性与可靠性。  相似文献   
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