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901.
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   
902.
针对目前编队反潜作战仿真领域中模型利用效率和可重用性较低的现状,提出并建立了基于组件技术的编队反潜仿真模型体系结构,依据编队反潜作战实际物理过程对编队反潜作战仿真模型体系进行了组件化层次结构划分和作战仿真模型组件设计,按照J2EE/EJB体系结构,完成了系统配置和不同类型组件及组件间信息交互接口设计,并对仿真系统进行了实现.结果证明该方法能有效提高模型可重用性并提高系统仿真运行效率.  相似文献   
903.
为了提高无人机自主飞行、自主攻击的能力,设计一种整体式的无人机综合火力/飞行控制系统(IFFC系统),并对激光制导炸弹模态下的系统进行数字仿真.系统基于Winsock的TCP/IP协议的C/S模式,在服务器上完成无人机火控解算、火飞耦合器设计,在客户端设计基于PID算法的飞行控制模块.火控系统根据飞行状态和目标信息实时计算炸弹可达区域,瞄准距离误差经过火飞耦合器形成航向和俯仰控制命令反馈给飞控系统,驱动载机消.除瞄准误差,实现闭环控制.实验结果表明,无人机的瞄准速度和攻击精度都有所提高,为进一步开展自主式UAV的研究打下基础.  相似文献   
904.
提出了一种行波提取型同轴渡越时间振荡器,器件的提取腔采用了类膜片加载的扩展互作用腔结构,具有束波作用效率高,电子束空间电势能低等优点。提取腔的电场结构为3π/2模,与传统的类π模结构相比,提高了微波群速度,有利于微波能量的提取。通过引入前置反射腔,提高了调制腔的品质因数,显著降低了起振时间。利用数值模拟软件对所设计的器件进行了模拟和优化,在二极管电压530kV,二极管电流12.8kA,外加导引磁场0.7T的条件下,得到了2.41GW的输出功率,微波频率7.76GHz,束波功率转换效率达到35.5%。  相似文献   
905.
Cryptocurrency is one of the earliest and the most successful applications of blockchain, and it utilizes the distributed ledger, which is a commonly used technique in blockchain, to make a decentralized transaction within the blockchain of a cryptocurrency. However, how to make a decentralized transaction of cryptocurrencies between parties on different blockchains, that is, the cross-chain exchange, is not well-studied. In this paper, we develop a new method to make cross-chain exchanges based on the classical atomic swap. We first study the optionality embedded into the atomic swap and propose to add a premium into the atomic swap, and then design a new procedure with the premium to guarantee the fairness of the cross-chain exchange. We also provide an algorithm based on the least-squares Monte Carlo method to estimate the premium and analyze the convergence of the algorithm. Moreover, we study the cross-chain exchange with margin trading. We propose an adapted exchange procedure to make a fair cross-chain exchange and an algorithm to estimate the fair premium under the margin trading. Numerical experiments are provided to show the effectiveness of the algorithms.  相似文献   
906.
《防务技术》2022,18(10):1863-1874
The research of LEFP (linear explosive forming projectile) is of great value to the development of new warhead due to its excellent performance. To further improve the damage ability of the shaped charge warhead, a special shell overhanging structure was designed to increase the charge based on the traditional spherical charge, in which case the crushing energy of LEFP could be guaranteed. LS-DYNA was used to simulate different charge structures obtained by changing the number of detonation points, the length of shell platform, the radius of curvature and the thickness of liner. The RSM (response surface model) between the molding parameters of LEFP and the structural parameters of charge was established. Based on RSM model, the structure of shaped charge was optimized by using multi-objective genetic algorithm. Meanwhile, the formation process of jet was analyzed by pulsed X-ray photography. The results show that the velocity, length-diameter ratio and specific kinetic energy of the LEFP were closely related to the structural parameters of the shaped charge. After the optimization of charge structure, the forming effect and penetration ability of LEPP had been significantly improved. The experimental data of jet velocity and length were consistent with the numerical results, which verifies the reliability of the numerical results.  相似文献   
907.
The effects of magnesium/polytetrafluoroethylene (Mg/PTFE) pyrotechnic compositions on the coupled flow field and reignition mechanism are important aspects governing the performance and range of base bleed projectiles (BBPs).Owing to a decrease in pressure and temperature when the BBP leaves the muzzle,rapid depressurization occurs,which extinguishes the base bleed propellant.The Mg/PTFE py-rotechnic composition pressed in the igniter of the base bleed unit (BBU) provides additional energy to the BBU via a chemical reaction.Thus,the extinguished base bleed propellant is reignited under the effect of high-temperature combustion gas jets from the igniter.In this study,a numerical analysis is conducted to evaluate the effects of PTFE and Mg granularity as well as Mg/PTFE pyrotechnic compo-sitions.Owing to the rapid depressurization,the temperature and pressure was found to decrease for different Mg/PTFE pyrotechnic compositions.However,the depressurization time increased as the PTFE granularity increased,the Mg granularity decreased,and the Mg content increased.When the pressure in the combustion chamber of the BBU decreased to the atmospheric pressure,the combustion gas jets from the igniter expand upstream (rather than downstream).However,these combustion gas jets exhibit different axial and radial expansion characteristics depending on the pyrotechnic compositions used.The results show that the reignition delay time,td,of the base bleed propellant was 377.608,94.27,387.243,523.966,and 221.094 ms for cases A-E,respectively.Therefore,it was concluded that the Mg/PTFE pyrotechnic composition of case B was the most beneficial for the reignition of the base bleed propellant,with the earliest addition of energy and mass to the BBP.  相似文献   
908.
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   
909.
《防务技术》2022,18(10):1852-1862
To improve the thermal properties of aluminum (Al) in the energetic system, a coated structure with ammonium perchlorate (AP) was prepared by a facile approach. And N, N-Dimethylformamide (DMF) was chosen as an ideal solvent based on heterogeneous nucleation theory and molecular dynamics simulation. This coated structure could enlarge the contact area and improve the reaction environment to enhance the thermal properties. The addition of AP could accelerate oxidation temperature of Al with around 17.5 °C. And the heat release of 85@15 composition rises to 26.13 kJ/g and the reaction degree is 97.6% with higher peak pressure (254.6 kPa) and rise rate (1.397 MPa/s). An ideal ratio with 15 wt% AP was probed primarily. The high energy laser-induced shockwave experiment was utilized to simulate the reaction behavior in hot field. And the larger activated mixture of coated powder could release more energy to promote the growth of shockwave with higher speed up to 518.7 ± 55.9 m/s. In conclusion, 85@15 composition is expected to be applied in energetic system as a novel metal fuel.  相似文献   
910.
为研究不同因素对其电流扩展速度的影响,根据晶闸管的结构特点和工作原理,建立晶闸管器件模型及脉冲成形网络等效电路模型并进行了仿真模拟.数值仿真结果表明,当正向阻断电压从3000 V增加至5000 V时,扩展速度可增加24.6%;当基区宽度从500μm增加至900μm时,扩展速度降低了31.7%;当载流子寿命从1μs增加至...  相似文献   
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