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341.
量子技术是基于量子力学和其他学科交叉产生的新兴学科,已经涉及到计算、信息、导航、能源等多个应用领域。近年来,随着量子技术的快速发展和应用潜力,量子技术已成为研究热点并逐步走向应用。与此同时,世界新军事革命发展中武器装备须具有远程精确化、职能化、隐身化、无人化的技术特点。结合量子技术的特点,从量子计算,量子通信与量子密码、量子控制、量子导航、量子雷达,量子电池,量子技术对作战模式的改变等方面对武器装备领域的应用、作战能力和作战模式进行阐述。研究表明,量子计算的发展必然使现有武器装备的性能得到提高、作战能力得到提升,进而改变现有作战模式。  相似文献   
342.
美“海军一体化火力控制-制空”( NIFC-CA)是美军海上盾牌防御体系概念的重要组成部分。该体系经过多年的发展已初见成效。首先,对美“海军一体化火力控制———制空”的基本概念及内涵进行了阐述,对其主要组成CEC、E-2D预警机、宙斯盾系统及标准-6舰空导弹在防御体系中的功能进行了分析;然后,介绍了美NIFC-CA的6种主要指挥控制模式,并对其协同指挥决策模式进行了分析,得出了指挥决策分布处理的特点;最后,总结了美NIFC-CA发展对我海军海上防御力量发展建设的启示。  相似文献   
343.
超视距反舰导弹射击方式优化选择   总被引:6,自引:0,他引:6  
射击方式的选择是反舰导弹作战使用的重要内容。在超视距作战需求的牵引下,传统视距反舰导弹的射击方式受到了巨大挑战。为优化选择超视距反舰导弹的射击方式,建立了两种常用射击方式的导弹捕捉概率模型和目标机动模型,给出一种典型条件不同目标机动航向的导弹捕捉概率,结果表明采用有前置量方式射击无法有效提高超视距导弹的捕捉概率,甚至在某些典型条件下还低于无前置量方式射击的捕捉概率,指出无前置方式是超视距反舰导弹射击的优选方式。  相似文献   
344.
基于FMECA的某型雷达系统故障分析   总被引:2,自引:0,他引:2  
故障模式、影响及危害性分析 (简称FMECA)是提高系统可靠性的一种有效的工具。在雷达系统故障分析中运用FMECA方法 ,通过计算机辅助程序实现了故障分析的预测分析和定量分析。与传统的故障分析方法相比 ,该方法能够避免分析中的盲目性和主观性 ,可以获得更为准确的分析结果  相似文献   
345.
秦有权 《国防科技》2017,38(1):001-007
通过分析空袭兵器、空袭历史、防空体系和防护技术的发展,将空袭模式划分为防区内(低空)地毯式打击、防区内(中低空)多手段打击、防区外陆海空三位一体精确打击三代。将防护体系划分为"边陲墙壕烽火台+腹地城池"、"防空系统+防护工程"两代。并预测了第四代空袭模式:防区外陆海空天四位一体全球快速精确打击和与之相对应的第三代"防空反导+信息化防护工程"防护体系。根据打击力和防护力相生相克的矛盾运动,提出了末端防护工程应吸收信息技术、发展综合防护技术,信息化时代的防护工程不仅要保护可以转入地下的目标,而且要保护无法转入地下的目标。从源头上为陆基目标防护的研究和建设提供参考和启迪。  相似文献   
346.
军队建设和未来战争呼唤高素质复合型的军事人才.抓紧培养和造就一大批高素质复合型军事人才,是我军建设的战略选择和根本大计,也是我军院校的神圣职责和光荣使命.而要培养高素质复合型军事人才,必须首先更新教育思想观念,并以先进的教育思想观念为指导,确立科学的人才目标模型,优化教学总体设计;必须在加强课程教学上下功夫,把教学内容作为深化改革的核心和关键,同时抓好与其相适应的各项配套改革,确保整个教学改革协调一致的发展;必须不断创新军事人才培养模式,全面提高办学水平,从机制和实力2方面来保证培养目标的实现.  相似文献   
347.
以某师的网管系统为例 ,介绍了基于 CORBA ORB通信总线结构网管软件的设计与实现。并对其中的若干技术问题 ,如网管信息模型的建立、网管软件的安全性及本系统的不足进行了深入讨论  相似文献   
348.
《防务技术》2020,16(4):883-892
The influence of initiation modes on the explosive dispersion process of the multi-layer composite charge (MCC) was studied. Overpressure sensors and high-speed photography system were used to investigate the energy release process of an MCC with a specific structure. The shock wave pressure and explosive dispersion characteristics of the MCC under different initiation modes were compared. The forming and expanding process of the shock wave of the composite charge under different initiation modes was determined. The separation position of the shock wave and fireball interface was determined. The calculation formulas of the shock radius and overpressure of the composite charge are presented. The radius of the shock wave of the composite charge was significantly affected by the initiation mode. Moreover, the development process of the composite explosive fireball under different initiation modes was analyzed, the variation rules of the composite charge dispersion radius and fireball dispersion velocity with time were obtained under the different initiation modes, the explosion energy release rate of composite charge under simultaneous initiation modes was the highest, and the peak overpressure under the simultaneous initiation mode was 1.61 times that of central single-point initiation.  相似文献   
349.
《防务技术》2020,16(3):543-554
Underwater acoustic signal processing is one of the research hotspots in underwater acoustics. Noise reduction of underwater acoustic signals is the key to underwater acoustic signal processing. Owing to the complexity of marine environment and the particularity of underwater acoustic channel, noise reduction of underwater acoustic signals has always been a difficult challenge in the field of underwater acoustic signal processing. In order to solve the dilemma, we proposed a novel noise reduction technique for underwater acoustic signals based on complete ensemble empirical mode decomposition with adaptive noise (CEEMDAN), minimum mean square variance criterion (MMSVC) and least mean square adaptive filter (LMSAF). This noise reduction technique, named CEEMDAN-MMSVC-LMSAF, has three main advantages: (i) as an improved algorithm of empirical mode decomposition (EMD) and ensemble EMD (EEMD), CEEMDAN can better suppress mode mixing, and can avoid selecting the number of decomposition in variational mode decomposition (VMD); (ii) MMSVC can identify noisy intrinsic mode function (IMF), and can avoid selecting thresholds of different permutation entropies; (iii) for noise reduction of noisy IMFs, LMSAF overcomes the selection of decomposition number and basis function for wavelet noise reduction. Firstly, CEEMDAN decomposes the original signal into IMFs, which can be divided into noisy IMFs and real IMFs. Then, MMSVC and LMSAF are used to detect identify noisy IMFs and remove noise components from noisy IMFs. Finally, both denoised noisy IMFs and real IMFs are reconstructed and the final denoised signal is obtained. Compared with other noise reduction techniques, the validity of CEEMDAN-MMSVC-LMSAF can be proved by the analysis of simulation signals and real underwater acoustic signals, which has the better noise reduction effect and has practical application value. CEEMDAN-MMSVC-LMSAF also provides a reliable basis for the detection, feature extraction, classification and recognition of underwater acoustic signals.  相似文献   
350.
Emerging sharing modes, like the consumer-to-consumer (C2C) sharing of Uber and the business-to-consumer (B2C) sharing of GoFun, have considerably affected the retailing markets of traditional manufacturers, who are motivated to consider product sharing when making pricing and capacity decisions, particularly electric car manufacturers with limited capacity. In this paper, we examine the equilibrium pricing for a capacity-constrained manufacturer under various sharing modes and further analyze the impact of capacity constraint on the manufacturer's sharing mode selection as well as equilibrium outcomes. We find that manufacturers with low-cost products prefer B2C sharing while those with high-cost products prefer C2C sharing except when the sharing price is moderate. However, limited capacity motivates manufacturers to enter into the B2C sharing under a relatively low sharing price, and raise the total usage level by sharing high-cost products. We also show that the equilibrium capacity allocated to the sharing market with low-cost products first increases and then decreases. Finally, we find that sharing low-cost products with a high limited capacity leads to a lower retail price under B2C sharing, which creates a win-win situation for both the manufacturer and consumers. However, sharing high-cost products with a low limited capacity creates a win-lose situation for them.  相似文献   
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