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911.
自行高炮光电火控半实物仿真系统技术实现途径分析   总被引:1,自引:0,他引:1  
介绍了自行高炮光电火控系统半实物仿真试验的基本原理和技术实现途径,提出了光电火控系统仿真试验的技术实现途径主要取决于目标模拟方式的观点.描述了图像注入式、屏幕反射式和准直投射式等3种目标模拟方式的功能、组成和工作原理.针对光电火控系统性能指标鉴定试验的特点,深入分析了3种方式的优缺点,认为屏幕反射式和准直投射式适用于鉴定试验,根据目前的技术发展水平,可优先发展准直投射式.  相似文献   
912.
摩擦的存在导致坦克炮控系统出现低速爬行等现象,使系统性能变差。针对该系统,提出未知摩擦的自适应补偿控制。更具一般性的未知摩擦及系统的参数不确定性使得对摩擦的自适应补偿变的非常困难。在控制器设计中,通过精确估计摩擦及系统中的未知参数、观测摩擦内动态对其进行补偿,从而避免了由于简单地把摩擦看成外界扰动进行补偿所造成的系统性能的损失。同时全面考虑了系统的不确定性和外界扰动,使得控制器有较强的抗干扰性。  相似文献   
913.
在《现代教育技术》的课程教学中,笔者对B-learning进行了前测——后测菲对等控制组设计的准实验研究。通过对实验数据的分析发现,在学科知识测验方两,两组无显著差异;在是否完成自己预期目标:疗面,两者呈现了显著差异;在协作方面,两种教学方法也擘现出了较显著的差异。另外,B-learning对于培养学习者认知能力和解决问题的能力非常有效。为了能更好地开展B-learning,教师要帮助学生变革他们的学习观,给学生及时有效地指导,并提供丰富的支持环境。  相似文献   
914.
设计了一种目标凝视自适应姿态控制方法,可以实现未知目标位置和未标定相机参数条件下的目标凝视控制。根据运动学方程提取出恰当的未知参数,从而将参数进行线性化表示;引入关于未知参数的势函数,确保参数矩阵的秩满足稳定性要求;采用了一个参数自更新律在线估计未知参数,提出了基于估计参数的自适应控制律。采用李雅普诺夫稳定性理论和芭芭拉特引理,证明了目标成像位置与期望成像位置的误差可以渐近收敛到零。仿真结果表明:目标位置未知且相机参数存在偏差的情况下,该自适应控制器能〖BHDWG8,WK10YQ,DK1*2,WK1*2D〗〖XCSC.TIF;%129%129〗听语音 聊科研与作者互动 够有效地对深空目标进行凝视观测。  相似文献   
915.
城市交通流量预测对交通管理和公共安全具有重要意义。然而,交通栅格流量数据中的规律在时刻变化,在城市中存在全局范围的时空间关系,并且不同特征通道在每个城市区域上有不同的重要性。为解决这些挑战并做出更准确的预测,设计了一种新颖的时空神经网络模型——3D通道注意力网络(three-dimensional channel-wise attention networks,3D-CANet)。提出一个3D通道内注意力(three-dimensional inner channel attention,3D-InnerCA)单元来动态捕获各个通道中不同的全局时空相关性,同时设计通道间注意力(inter channel attention,InterCA)单元来自适应地重校准每个区域上不同特征通道的贡献。在3个真实交通栅格流量数据集上的实验结果表明,3D-CANet模型的预测能力优于其他对比方法,证明了模型的有效性。  相似文献   
916.
针对化学氧碘激光器(Chemical Oxygen-Iodine Laser, COIL)光腔内边界层的被动控制方法,设计了三种实验件。光腔的上下壁板是可拆卸的,可以更换不同的实验件,以此比较边界层的控制效果。实验结果表明:开槽板、主流引射缝和开孔板在对光腔边界层的控制上都取得了一定的效果,改善了光腔特别是光腔后半部分的压力分布。在一定范围内,增加边界层的抽气量,可以进一步减小边界层厚度,降低光腔压力,同时提高COIL出光功率,但是当抽气量过大时,反而会降低出光功率。三种实验件中,主流引射的方式对抽气量最敏感,当抽气量增加至5%时,COIL出光功率已经明显下降;开孔板对抽气量不太敏感,抽气量从1%增加至7%,对COIL出光功率的影响并不明显。  相似文献   
917.
《防务技术》2022,18(10):1810-1821
In this paper, various core-shell structured Al–Ni@ECs composites have been prepared by a spray-drying technique. The involved ECs refer to the energetic composites (ECs) of ammonium perchlorate/nitrocellulose (AP/NC, NA) and polyvinylidene fluoride/hexanitrohexaazaisowurtzitane (PVDF/CL-20, PC). Two Al–Ni mixtures were prepared at atomic ratios of 1:1 and 1:3 and named as Al/Ni and Al/3Ni, respectively. The thermal reactivity and combustion behaviors of Al–Ni@ECs composites have been comprehensively investigated. Results showed that the reactivity and combustion performance of Al–Ni could be enhanced by introducing both NA and PC energetic composites. Among which the Al/Ni@NA composite exhibited higher reactivity and improved combustion performance. The measured flame propagation rate (v = 20.6 mm/s), average combustion wave temperature (Tmax = 1567.0 °C) and maximum temperature rise rate (γt = 1633.6 °C/s) of Al/Ni@NA are higher than that of the Al/Ni (v = 15.8 mm/s, Tmax = 858.0 °C, and γt = 143.5 °C/s). The enhancement in combustion properties could be due to presence of the acidic gaseous products from ECs, which could etch the Al2O3 shell on the surface of Al particles, and make the inner active Al to be easier transported, so that an intimate and faster intermetallic reaction between Al and Ni would be realized. Furthermore, the morphologies and chemical compositions of the condensed combustion products (CCPs) of Al–Ni@ECs composites were found to be different depending on the types of ECs. The compositions of CCPs are dominated with the Al–Ni intermetallics, combining with a trace amount of Al5O6N and Al2O3.  相似文献   
918.
One of the main challenges for multi-wheel hub motor driven vehicles is the coordination of individual drivetrains to improve mobility and stability in the steering process.This paper proposes a dual-steering mode based on direct yaw moment control for enhancing vehicle steering ability in complex environ-ments.The control system is designed as a hierarchical structure,with a yaw moment decision layer and a driving force distribution layer.In the higher-level layer,the objective optimization function is con-structed to obtain the slip steering ratio,which represents the degree of vehicle slip steering in the dual-steering mode.A yaw moment controller using active disturbance rejection control theory is designed for continuous yaw rate control.When the actual yaw rate of the vehicle deviates from the reference yaw rate obtained by the vehicle reference model and the slip steering ratio,the yaw moment controller is actuated to determine the yaw moment demand for vehicle steering.In the lower-level layer,there is a torque distribution controller based on distribution rules,which meets the requirement of yaw moment demand without affecting the total longitudinal driving force of the vehicle.For verifying the validity and feasibility of the dual-steering mode,simulations were conducted on the hardware-in-loop real-time simulation platform.Additionally,corresponding real vehicle tests were carried out on an eight-wheel prototype vehicle.Test results were generally consistent with the simulation results,thereby demon-strating that the proposed dual-steering mode reduces steering radius and enhances the steering per-formance of the vehicle.  相似文献   
919.
《防务技术》2022,18(10):1922-1934
On a narrow warship platform, the coordinated use of shipborne weapon systems may cause firepower conflicts, which seriously endangers the ship safety. Meanwhile, with directed-energy weapons mounted on ships, firepower conflicts between weapons become a “high probability event”. Aiming at the problem of firepower safety control, based on the research about the collision probability model of air crafts and space targets and according to the cone of fire model of conventional weapons and directed-energy weapons, this paper solved the firepower conflict probabilities between conventional weapons as well as between conventional weapons and directed-energy weapons respectively using the methods of probability theory, and established the firepower safety control model. Then the calculation of firepower conflict probability was carried out using the dimensionality reduction method based on the equivalent conversion of polar coordinates and the power series method based on Laplace transform. The simulation results revealed that the proposed model and calculation methods are effective and reliable, which can provide theoretical basis and technical support for resolution of firepower conflicts between weapons.  相似文献   
920.
《防务技术》2022,18(12):2170-2180
The reconstruction control of modular self-reconfigurable spacecraft (MSRS) is addressed using an adaptive sliding mode control (ASMC) scheme based on time-delay estimation (TDE) technology. In contrast to the ground, the base of the MSRS is floating when assembled in orbit, resulting in a strong dynamic coupling effect. A TED-based ASMC technique with exponential reaching law is designed to achieve high-precision coordinated control between the spacecraft base and the robotic arm. TDE technology is used by the controller to compensate for coupling terms and uncertainties, while ASMC can augment and improve TDE’s robustness. To suppress TDE errors and eliminate chattering, a new adaptive law is created to modify gain parameters online, ensuring quick dynamic response and high tracking accuracy. The Lyapunov approach shows that the tracking errors are uniformly ultimately bounded (UUB). Finally, the on-orbit assembly process of MSRS is simulated to validate the efficacy of the proposed control scheme. The simulation results show that the proposed control method can accurately complete the target module’s on-orbit assembly, with minimal perturbations to the spacecraft’s attitude. Meanwhile, it has a high level of robustness and can effectively eliminate chattering.  相似文献   
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