共查询到19条相似文献,搜索用时 251 毫秒
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联合战斗作为一种新的战斗形式,它对各个战斗要素提出了新的军事需求.以此为出发点从作战任务、作战行动及战场控制这三个方面分析了狭义的坦克远程火力的军事需求.力求在信息化作战的大背景下与联合战斗的战术层面上,将信息在火力、战术中的渗透作为分析的主脉络,从"态势感知"及运用的角度阐述清楚联合战斗狭义的坦克远程火力军事需求,从而为研究坦克的发展及其联合战斗中的使用提供一定的参考. 相似文献
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伊拉克战争中,美英装甲兵在夺取巴格达和巴士拉战斗中的出色表现,打破了传统的主流观念,即认为城市作战需要依靠步兵而不适合装甲兵。随着世界城市化趋势的不断加快,作为陆军重要作战力量的装甲兵将无可避免的担负起未来城市作战的任务。因此,为了适应城市环境,迎接未来城市战的挑战,一些主要军事大国针对装甲兵在城市作战中的弱点,在火力、防护力和机动力等方面对装甲兵的装备进行了大幅度调整,以适应城市战的需要。一、武器系统的发展首先,对弹种使用的要求。尾翼稳定脱壳穿甲弹穴APFSDS雪是目前主战坦克普遍采用的弹种,它能有效地在远… 相似文献
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主战坦克是具有中型坦克的机动性和重型坦克的火力、防护力的履带式装甲战斗车辆,是地面部队的主要突击力量。主战坦克的发展已历三代,目前世界最先进的第三代主战坦克具有火炮口径大、直射距离远、生存能力强、发动机功率大、机动性好等特点。今后,主战坦克的发展将受到军事需求、作战任务、战场环境、技术发展水平和经济条件等诸多因素的影响。从技术角度看,未来主战坦克的发展将呈现出以下趋势。一、增强火力1.采用大口径火炮。火炮威力与其口径大小密切相关。目前,120~125毫米口径火炮已成为现代主战坦克的标准配置。未来主战坦克将安… 相似文献
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针对坦克武器系统作战能力评估新趋势,运用不完全信息群体多属性决策方法探索坦克武器系统作战能力评估问题。依据决策群体中每一决策个体的主观偏爱和信息掌握程度,形成对不同坦克武器系统在各属性下效用的不完全信息,决策群体集结各效用不完全信息形成群体偏爱,对武器系统作战能力进行排序或选优。该方法模型简单、利用计算机实现,较好地解决了信息化条件下坦克武器系统作战能力评估问题。 相似文献
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合成坦克分队最佳火力分配模型 总被引:1,自引:1,他引:0
实际战斗中敌我双方均以多兵种进行交战,在兰切斯特方程基础上,利用不同作战单位的相对作战指数,以及各种作战单位之间的交战强度、掩护强度和循环交战强度,建立合成坦克分队最佳火力分配算法,并应用该算法定量计算二对二作战中坦克分队火力最佳分配的方案,为定量研究合成坦克分队火力运用打下了基础。 相似文献
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《防务技术》2010,(1)
Based on the analysis for the interception process of ship-to-air missile system to the anti-ship missile stream, the antagonism of ship-to-air missile and anti-ship missile stream was modeled by Monte Carlo method. This model containing the probability of acquiring anti-ship missile, threat estimation, firepower distribution, interception, effectiveness evaluation and firepower turning, can dynamically simulate the antagonism process of anti-ship missile attack stream and anti-air missile weapon system. The anti-ship missile's saturation attack stream for different ship-to-air missile systems can be calculated quantitatively. The simulated results reveal the relations among the anti-ship missile saturation attack and the attack intensity of anti-ship missile, interception mode and the main parameters of anti-air missile weapon system. It provides a theoretical basis for the effective operation of anti-ship missile. 相似文献
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《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