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281.
282.
ZHAO Hongshenga XU Xiaohaob ZHANG Juna ZHU Yanboa YANG Chuansenc HONG Shengd aSchool of Electronics Information Engineering Beihang University Beijing China bCollege of Air Traffic Management Civil Aviation University of China Tianjin China cCollege of Civil Aviation Nanjing University of Aeronautics Astronautics Nanjing China dSchool of Reliability System Engineering China 《中国航空学报》2011,(3):329-336
Flight technical error (FTE) combined with navigation system error (NSE) is the main part of total system error (TSE) in performance based navigation (PBN).The implementation of PBN requires pre-flight prediction and en-route short-term dynamical prediction of the TSE.Once the sum of predicted lateral FTE and NSE is greater than the specified PBN value,the PBN cannot operate.Thus,accurate modeling and thorough analysis of lateral FTE are indispensible.Multiple-input multiple-output (MIMO) lateral track control system of a transport aircraft is designed using linear quadratic Gaussian and loop transfer recovery (LQG/LTR) method,and the lateral FTE of a turbulence disturbed approach operation is analyzed.The error estimation mapping function of latera FTE and its bound estimation algorithm are proposed based on singular value theory.According to the forming mechanism of lateral FTE,the algorithm considers environmental turbulence fluctuation disturbance,aircraft dynamics and control system parameters.Real-data-based Monte-Carlo simulation validates the theoretical analysis of FTE.It also shows that FTE is mainly caused by turbulence fluctuation disturbance when automatic flight control system (AFCS) is engaged and would increase with escalating environmental turbulence intensity. 相似文献
283.
针对信道慢时变特性及噪声复杂的特点,提出了适用于低压电力线通信的降低峰均比的改进算法.改进算法对原始输入序列中的部分数据进行循环移位来获得一系列不同的新数据序列;在每个新数据序列尾部插入相应的边带信息组成一个输入候选序列;对这一系列不同的输入候选序列分别实施傅里叶反变换,得到不同的输出序列;从中选择峰均比最小的用于传输,达到降低系统峰均比的目的.结果表明:改进算法能够有效地降低系统的峰均比,并且能够获得更好的误码率性能,同时具有比传统选择性映射方法更低的计算复杂度. 相似文献
284.
本文简述了目前歼×飞机的攻角位置校准的试验方法。通过分析比较 ,认为采用微波空间定位校准法进行攻角位置误差校准优于目前风洞试验校准法 相似文献
285.
在确定的函数关系(数学模型)中,因变量(输出量)随自变量(输入量)的变化规律完全由数学逻辑所确定,自变量到因变量的传递系数(灵敏系数)也可由因变量的标准差和自变量的标准差之比所决定,而与自变量的来历(测量的或者给定的)没有关系[1].本文根据这一基本原理,采用模拟自变量随机变化的方法,成功计算了手持式激光测距仪的测距固定偏差和比例偏差系数的测量不确定度,从而计算出测距标准差综合评定的扩展不确定度,同时解决了复杂的数学模型中多个输入量到输出量的灵敏系数和输出量的不确定度的计算问题. 相似文献
286.
L. Anselmo C. Pardini 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2009
A large set of simulations, including all the relevant perturbations, was carried out to investigate the long-term dynamical evolution of fictitious high area-to-mass ratio (A/M) objects released, with a negligible velocity variation, in each of the six orbital planes used by Global Positioning System (GPS) satellites. As with similar objects discovered in near synchronous trajectories, long lifetime orbits, with mean motions of about 2 revolutions per day, were found possible for debris characterized by extremely high area-to-mass ratios. Often the lifetime exceeds 100 years up to A/M ∼ 45 m2/kg, decreasing rapidly to a few months above such a threshold. However, the details of the evolution, which are conditioned by the complex interplay of solar radiation pressure and geopotential plus luni-solar resonances, depend on the initial conditions. Different behaviors are thus possible. In any case, objects like those discovered in synchronous orbits, with A/M as high as 20–40 m2/kg, could also survive in this orbital regime, with semi-major axes close to the semi-synchronous values, with maximum eccentricities between 0.3 and 0.7, and with significant orbit pole precessions (faster and wider for increasing values of A/M), leading to inclinations between 30° and more than 90°. 相似文献
287.
针对采用自适应前向差错控制(AFEC)的卫星异步传递模式(ATM)网络,研究了两种有效带宽估计方法。由于AFEC码率的动态特性使业务实际的传输速率具有不固定性,因此估计有效带宽时要考虑AFEC的影响。首先针对一般卫星时变信道和多码率AFEC情况下的卫星ATM,应用流体近似方法分析了有效带宽的计算,然而该方法要求的条件及计算复杂度均比较高,应用中有局限性。以此方法为基础,提出了采用修正因子的估计方法。数值结果表明采用修正因子的有效带宽估计方法比较简单可靠,适用面较广。 相似文献
288.
在空间目标碰撞预警分析中,准确地计算出空间目标的轨道面交线是进行地心距筛选、时间差筛选的前提,目前较多使用的快速确定轨道面交线的方法为简单二体引力模型。深入分析该模型,比较了其计算的空间目标轨道面交线与STK计算结果的差异,指出了简单二体引力模型在计算空间目标轨道面交线时的局限性,认为轨道摄动是影响轨道面交线计算准确性的主要原因,应该采用更能反映空间目标实际运动规律的改进的二体引力模型的方法。 相似文献
289.
本文简介圆柱度误差评定的常用数学模型,并对用最小区域法评定圆柱度误差的几种近似方法及其优缺点展开讨论。 相似文献
290.
Will Furnell Abhishek Shenoy Elliot Fox Peter Hatfield 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2019,63(5):1523-1540
The Langton Ultimate Cosmic ray Intensity Detector (LUCID) is a payload onboard the satellite TechDemoSat-1, used to study the radiation environment in Low Earth Orbit (635?km). LUCID operated from 2014 to 2017, collecting over 2.1 million frames of radiation data from its five Timepix detectors on board. LUCID is one of the first uses of the Timepix detector technology in open space, with the data providing useful insight into the performance of this technology in new environments. It provides high-sensitivity imaging measurements of the mixed radiation field, with a wide dynamic range in terms of spectral response, particle type and direction. The data has been analysed using computing resources provided by GridPP, with a new machine learning algorithm that uses the Tensorflow framework. This algorithm provides a new approach to processing Medipix data, using a training set of human labelled tracks, providing greater particle classification accuracy than other algorithms. For managing the LUCID data, we have developed an online platform called Timepix Analysis Platform at School (TAPAS). This provides a swift and simple way for users to analyse data that they collect using Timepix detectors from both LUCID and other experiments. We also present some possible future uses of the LUCID data and Medipix detectors in space. 相似文献