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31.
空间环境因素引发的星载软件瞬态的控制流错误可能对系统执行效能造成严重影响,为避免容错算法存储开销和执行开销给系统带入过多的计算压力,提出在容错算法开销和所取得的系统的可靠性提升上取得一定折衷,这是星载软件可靠性设计的合理方向。设计了一种适合于弹性添加容错代码的容错方法:扩展块数字签名的控制流检测方法ESCFC(Extend block Signatures for Control Flow Checking)。由空间高能粒子的实验结果和在轨实测结果为系统可靠度建模,提出了算法开销和可靠性效能提升的平衡关系的工程参考和理论依据。定性分析和模拟,充分说明了将该方法运用于航天工程的可行性。  相似文献   
32.
在基于集群架构的实时测控系统上,通过软件设计实现一种满足数据处理实时性和系统高可用的集群数据处理进程控制方法。计算节点运行的数据处理进程采用多线程设计,对时间驱动线程和数据驱动线程分别设计了工作信号处理流程。实践证明方法不但能够保证计算节点完成数据处理任务的实时性和可靠性,还能动态完成集群节点的任务迁移和故障恢复,提高了测控集群系统的实时性和可用性,从而有效发挥集群系统架构在测控系统中应用的优势。  相似文献   
33.
绳系卫星横向振动的控制方法   总被引:2,自引:2,他引:2  
研究绳系卫星绳索横向振动问题。首先建立绳索振动方程,由Pontrgasin方法求得抑制绳索横向振动的纵向优化控制力。实现方式为开启母星体内的电机控制绳长使星体产生加速度,星体惯性力导致绳轴向附加张力。  相似文献   
34.
有效控制由于变形作用 (水化热、混凝土干缩和气温温差 )引起的结构裂缝 ,进而防止工程结构的裂漏通病 ,是一个普遍关注的技术难题。本文以广州市滨江东路隧道等工程为实例 ,从结构设计、结构与基础的共同作用、施工技术、材料优选、环境条件及信息化施工等方面 ,介绍有效控制地下结构裂缝的对策和措施  相似文献   
35.
This paper proposes a neural network-based fault diagnosis scheme to address the problem of fault isolation and estimation for the Single-Gimbal Control Moment Gyroscopes(SGCMGs) of spacecraft in a periodic orbit. To this end, a disturbance observer based on neural network is developed for active anti-disturbance, so as to improve the accuracy of fault diagnosis.The periodic disturbance on orbit can be decoupled with fault by resorting to the fitting and memory ability of neural network. Subsequ...  相似文献   
36.
简要介绍了SNMP(简单网络管理协议)管理模型,基于测控设备C/S(客户/服务器)监控模式现状,分析了测控设备监控信息传输的特点,对现有监控信息传输协议与SNMP协议进行了研究,从传输可靠性、传输效率与协议操作应用等方面进行了比较,并开展了基于SNMP协议的远程监控信息传输试验。试验结果表明,基于SNMP协议可实现测控设备参数与状态监视信息的传输。  相似文献   
37.
研究在轨服务航天器逼近与捕获目标航天器的相对轨道姿态耦合动力学建模问题。考虑航天器姿态与对接位置的运动耦合,建立目标运行在任意轨道下的相对轨道姿态耦合动力学模型,并对模型中的运动耦合进行深入分析。设计一种非线性的输出反馈姿态控制律,将建立耦合动力学模型与CW方程进行仿真比较,验证轨道与姿态的运动耦合对两航天器对接点之间相对位置的运动影响。  相似文献   
38.
《中国航空学报》2021,34(3):200-224
Unmanned Aircraft Systems (UASs) have advanced technologically and surged exponentially over recent years. Currently, due to safety concerns, most civil operations of UAS are conducted in low-level uncontrolled area or in segregated controlled airspace. As the industry progresses, both operational and technological capabilities have matured to the point where UASs are expected to gain greater freedom of access to both controlled and uncontrolled airspace. Extensive technical and regulatory surveys have been conducted to enable the expanded operations. However, most surveys are derived from the perspective of UAS own operating mechanism and barely consider interactions of their non-segregated activities with the Air Traffic Management (ATM) system. Hence, to fill the gap, this paper presents a survey conducted from the perspective of Air Navigation Service Provider (ANSP), which serves to accommodate these new entrants to the overall national airspace while continuing flight safety and efficiency. The primary objectives of this paper are to: (A) describe what typical ANSP-supplied UAS Traffic Management (UTM) architecture is required to facilitate all types of civil UAS operations; (B) identify three major ANSP considerations on how UAS can be accommodated safely in civil airspace; (C) outline future directions and challenges related with UAS operations for the ANSP.  相似文献   
39.
《中国航空学报》2021,34(5):27-38
Studies show that different geometries of a Variable Cycle Engine (VCE) can be adjusted during the transient stage of the engine operation to improve the engine performance. However, this improvement increases the complexity of the acceleration and deceleration control schedule. In order to resolve this problem, the Transient-state Reverse Method (TRM) is established in the present study based on the Steady-state Reverse Method (SRM) and the Virtual Power Extraction Method (VPEM). The state factors in the component-based engine performance models are replaced by variable geometry parameters to establish the TRM for a double bypass VCE. Obtained results are compared with the conventional component-based model from different aspects, including the accuracy and the convergence rate. The TRM is then employed to optimize the control schedule of a VCE. Obtained results show that the accuracy and the convergence rate of the proposed method are consistent with that of the conventional model. On the other hand, it is found that the new-model-optimized control schedules reduce the acceleration and deceleration time by 45% and 54%, respectively. Meanwhile, the surge margin of compressors, fuel–air ratio and the turbine inlet temperature maintained are within the acceptable criteria. It is concluded that the proposed TRM is a powerful method to design the acceleration and deceleration control schedule of the VCE.  相似文献   
40.
《中国航空学报》2023,36(4):486-495
Attitude references are greatly needed for the evaluation and calibration of Inertial Navigation Systems (INSs), which are widely used in gravimeter, marine, and aeronautical navigation. High-accuracy turntable, INS, and Global Navigation Satellite System have been utilized to verify the performance of relatively low-accuracy INS. The accuracy requirement of the attitude reference continuously increases with the rapid improvement of inertial sensors and navigation algorithms. However, the cost of attitude determination system increases rapidly with the increase of attitude accuracy requirement. To solve this limitation, the integration of level meter, INS, and low-cost turntable is proposed to provide level attitude, such as roll and pitch. The turntable is utilized to rotate the INS. An integration model of the level meter and INS is built to estimate the level attitude and reduce the cost of the turntable. The proposed method successfully avoids the dependence on high-accuracy turntables. An observability degree analysis is conducted to improve the level attitude accuracy further. The simulation and turntable test results indicate that the proposed method can provide high-accuracy level attitude without high-accuracy INS or turntable and is applicable to error calibration and attitude evaluation of INS.  相似文献   
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