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881.
针对多无人机任务决策方法研究中传统优化算法难以在短时间内得到期望结果的问题,基于深度强化学习提出一种无人机多智能体深度确定性策略梯度(MADDPG)算法,通过允许无人机在学习时使用全局信息,在应用决策的时候只使用局部信息的方法,从网络结构、状态空间、动作空间和奖励函数设计了 MADDPG算法的模型结构.最后通过仿真实验...  相似文献   
882.
对某重型燃气轮机燃料喷嘴的工作特性进行了试验研究.主要测定了该燃机喷嘴组在1.0MPa压力下工作时每个喷嘴的流量特性,通过数码照相和计算机图像处理测定各喷嘴的喷雾锥角,利用相位多普勒粒子分析仪(PDPA)和激光多普勒测速仪(LDV)测量雾化粒度SMD.分析试验结果,得出了一些有重要价值的数据和结论,为燃机喷嘴的研制和改进提供了重要依据.  相似文献   
883.
王玮  杜星文 《航空学报》2008,29(2):472-477
 预浸机织织物是一种未固化的织物复合材料,其性质既不同于纯织物材料也不同于固化后的织物复合材料,具有独特的力学性质。根据连续介质力学的理论,结合预浸织物的非线性的黏弹性特性,从代数不变量出发,推导了预浸织物的本构方程。同时对描述预浸织物性能的像框剪切试验的步骤及方法做了阐述。通过像框剪切试验的结果与本构方程的对比,验证了本构方程的正确性,该方程较好地描述了预浸积物的性质。本构方程的导出为研究空间充气结构的静态、动态及热分析奠定了一定的理论基础。  相似文献   
884.
传递对准姿态匹配的优化算法   总被引:1,自引:0,他引:1  
陈凯  鲁浩  闫杰 《航空学报》2008,29(4):981-987
 推导了4种传递对准姿态匹配算法,分析了这4种姿态匹配算法的优缺点,证明并验证了其中的“最优姿态匹配法”在姿态匹配算法中的最优性。首先介绍了传统的“姿态角匹配法”及其改进算法,即“姿态矩阵匹配法”,接着引入了量测失准角的概念,经过理论推导,提出了利用量测失准角进行传递对准姿态匹配的“量测失准角匹配法”。上述3种姿态匹配算法都是在子惯导安装角是小量的条件下推导而获得的,只能适用于安装角是小量的条件,具有一定的局限性。基于此,对“量测失准角匹配法”进行了完善,推导出了一种可在多挂点下使用的现代姿态匹配算法——最优姿态匹配法。从理论上证明了4种姿态匹配算法的相互关系。最后,采用“速度+姿态”匹配方案进行的传递对准仿真结果表明:4种姿态匹配算法具有相同的估计精度;推导的“最优姿态匹配法”在保证精度的同时,可应用于子惯导安装角是任意角度的情况,具有更广的应用范围。  相似文献   
885.
飞行器红外隐身效能工程评价方法   总被引:3,自引:1,他引:2  
韦第升  王小群  杜善义 《航空学报》2008,29(6):1592-1597
 针对飞行器的红外隐身问题,推导出红外辐射对比度与作用距离的理论关系,采用指数拟合获得大气透过率与作用距离的近似关系表达式,简化了对作用距离的计算,并通过实际算例考察了目标表面温度、目标发射率和飞行速度对红外辐射对比度及作用距离的影响。结果表明:对比度和作用距离随目标表面温度、发射率及飞行速度的下降趋势基本一致;在一定条件下,对比度可代替作用距离作为评价目标红外隐身效果的简单、快速的参数,对比度越小目标的红外隐身效果越好。对比度的计算快速、准确、灵活性强和适用范围广,为今后进一步对飞行器的红外隐身研究提供一定的理论参考。  相似文献   
886.
刘奇  向开恒  赵书阁  贺泉  李小玉  张楠 《宇航学报》2021,42(11):1377-1384
针对大型低轨星座在轨运行的高精度构型保持问题,提出了一种基于极限环的高精度相位保持方法。首先,推导了实际轨道与参考轨道的平相位角偏差与半长轴偏差的关系;然后,建立了基于极限环的相位保持周期以及半长轴改变量计算方法;最后,基于推导的半长轴偏差与相位偏差的关系,提出了一种相位保持实施方法。考虑地球非球形和大气阻力的数值仿真表明:本文提出的相位保持方法能够在卫星定轨数据精度不高、数据采样间隔较大的情况下,实现低轨星座系统的高精度相位保持。  相似文献   
887.
888.
Doppler, which is an instantaneous GNSS observable signal, has been proven effective in determining velocity and acceleration due to its high availability and accuracy. We propose a real-time triple-frequency cycle slip correction (CSC) method based on Doppler-aided signals because Doppler shift is time-independent and immune to cycle slips. When the sampling interval is less than 1 s, cycle slips on triple-frequency can be detected and repaired using pure Doppler data with high reliability; however, this method cannot be used when the sampling interval exceeds 1 s because the integral cumulative error of Doppler increases significantly. For such cases, a modified triple-frequency CSC approach has been developed based on the raw phase and smoothed code data that was refined using the Doppler signal. To suppress the effect of the integral Doppler error, a balance factor is introduced to adjust the contributions of the raw code and Doppler observables. After the refinement of the GNSS data, three independent combinations need be selected to detect and repair cycle slips with triple-frequency observations. Four constrained criteria have been proposed to select optimal combinations that can reduce the residual ionospheric delay (RID) and measurement noise to a low level. Finally, experiments were carried out to test the performance of the new method using real triple-frequency BDS observations (GPST: 3:15:00–5:55:00, March 23, 2018). The results show that pure Doppler can detect and repair cycle slips effectively with small intervals, and modified Hatch-Melbourne-Wübbena (HMW) method based on Doppler-aided signals can achieve 99.7% success rate in cycle slip correction with large intervals (up to 30 s).  相似文献   
889.
The tropopause is an important boundary in the Earth’s atmosphere, and has been the subject of close attention from atmosphere and climate researchers. To monitor the global tropopause using radio occultation (RO) data, there are two primary methods, one is the widely used temperature lapse rate method, and the other is the bending angle covariance transform method which is unique to RO data. We use FengYun3-C (FY3C) and Meteorological Operational Satellite Program (MetOp) RO data and European Centre for Medium-Range Weather Forecasts (ECMWF) operational analysis data to determine differences in RO tropopause height calculated by these two methods. We compute biases of the RO lapse rate tropopause height (LRTH) and the RO bending angle tropopause height (BATH) relative to the ECMWF LRTH. The dependences of the tropopause height biases on tropopause height (TPH) retrieval method, latitude, season and RO mission are investigated. The results indicate that BATH show a consistent 0.8–1.2 km positive bias over the tropics and high latitude regions compared with LRTH, however, over 25° to 40° latitude in both hemisphere, BATH results are less stable. Furthermore, the mean bias between BATH and LRTH displayed a different symmetrical characteristic from 2017.12 to 2018.2 (DJF) compared to 2018.6–2018.8 (JJA). However, except for some bias over Antarctica, the mean value of both LRTH and BATH show a similar tropopause variation, indicating the consistency of both methods.  相似文献   
890.
The attitude information of geostationary satellites is difficult to be obtained since they are presented in non-resolved images on the ground observation equipment in space object surveillance. In this paper, an attitude inversion method for geostationary satellite based on Unscented Particle Filter (UPF) and ground photometric data is presented. The inversion algorithm based on UPF is proposed aiming at the strong non-linear feature in the photometric data inversion for satellite attitude, which combines the advantage of Unscented Kalman Filter (UKF) and Particle Filter (PF). This update method improves the particle selection based on the idea of UKF to redesign the importance density function. Moreover, it uses the RMS-UKF to partially correct the prediction covariance matrix, which improves the applicability of the attitude inversion method in view of UKF and the particle degradation and dilution of the attitude inversion method based on PF. This paper describes the main principles and steps of algorithm in detail, correctness, accuracy, stability and applicability of the method are verified by simulation experiment and scaling experiment in the end. The results show that the proposed method can effectively solve the problem of particle degradation and depletion in the attitude inversion method on account of PF, and the problem that UKF is not suitable for the strong non-linear attitude inversion. However, the inversion accuracy is obviously superior to UKF and PF, in addition, in the case of the inversion with large attitude error that can inverse the attitude with small particles and high precision.  相似文献   
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