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South Korea is threatened by its troubled relationship with North Korea. North Korea possesses a large cache of missiles as well as chemical and biological weapons, and the future potential to mount nuclear weapons on its missiles. The United States is also challenged because of its defense commitments to Seoul. As a countermeasure, the United States and South Korea decided to deploy Terminal High Altitude Area Defense (THAAD) missile defenses in South Korea. However, China has objected. Chinese scholars believe the THAAD radar would be able to track Chinese inter-continental ballistic missiles, thereby weakening their deterrent. A technical analysis does not support this assertion. However, it is vital for South Korea, given its proximity and economic interdependence, to reassure China. South Korea should highlight that THAAD will be deployed by the United States Forces Korea and is not a commitment by Seoul to become part of U.S.-led missile defenses in the Asia-Pacific. 相似文献
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外军反舰导弹装备使用现状及发展趋势研究 总被引:1,自引:0,他引:1
反舰导弹作为海上舰船"杀手",其发展一直倍受各国海军关注。文章对反舰导弹的发展历程进行了回顾,对目前外军已经装备和正在研发的典型反舰导弹进行了分析和研究。以此为基础,对未来反舰导弹的发展趋势进行了探讨和展望,提出未来新型反舰导弹将趋于超远程化、超高速化、超隐身化、网络化和智能化。 相似文献
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刘威 《中国人民武装警察部队学院学报》2014,(8):49-51
人民防空地下商业建筑已向多元化的现代商业综合体发展,规模日趋庞大,其防火设计研究极为重要,而安全疏散设计是防火设计中的重中之重。结合人民防空地下商业建筑安全疏散设计要点,进行安全疏散设计的有关探讨,以保证火灾时人员利用安全出口进行疏散,最大限度地保障人身安全。 相似文献
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钱爱娟 《武警工程学院学报》2014,(3):4-6
强军目标是新时期军队建设的行动纲领。思想政治建设必须围绕强军目标展开。军队思想政治工作受所处环境的影响和制约。贯彻强军目标创设良好的思想政治工作环境,首先要从本单位自身做起,建设净化优美的军营“小环境”,塑造军营环境的“奋斗之关”“陶冶之美”“形象之美”,增强思想政治工作环境的推动力、感染力和约束力。 相似文献
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随着舰艇编队网络中心作战模式的产生与发展,其队形配置问题必须重新给予考虑。首先介绍了网络化反导作战系统的远程数据作战能力;其后,从指挥通信、火力掩护和一次耦合杀伤区3个方面给出舰舰间距的约束条件,以远程数据作战条件下编队舰空导弹杀伤区增量最大为优化目标,建立编队舰舰间距优化模型,并在此基础上结合电子干扰的要求,给出了编队队列角的最优范围解算方法;最后,在一定的战场假设下,通过示例的方式对模型的有效性与适应性进行了验证。 相似文献
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We consider the problem of assessing the value of demand sharing in a multistage supply chain in which the retailer observes stationary autoregressive moving average demand with Gaussian white noise (shocks). Similar to previous research, we assume each supply chain player constructs its best linear forecast of the leadtime demand and uses it to determine the order quantity via a periodic review myopic order‐up‐to policy. We demonstrate how a typical supply chain player can determine the extent of its available information in the presence of demand sharing by studying the properties of the moving average polynomials of adjacent supply chain players. The retailer's demand is driven by the random shocks appearing in the autoregressive moving average representation for its demand. Under the assumptions we will make in this article, to the retailer, knowing the shock information is equivalent to knowing the demand process (assuming that the model parameters are also known). Thus (in the event of sharing) the retailer's demand sequence and shock sequence would contain the same information to the retailer's supplier. We will show that, once we consider the dynamics of demand propagation further up the chain, it may be that a player's demand and shock sequences will contain different levels of information for an upstream player. Hence, we study how a player can determine its available information under demand sharing, and use this information to forecast leadtime demand. We characterize the value of demand sharing for a typical supply chain player. Furthermore, we show conditions under which (i) it is equivalent to no sharing, (ii) it is equivalent to full information shock sharing, and (iii) it is intermediate in value to the two previously described arrangements. Although it follows from existing literature that demand sharing is equivalent to full information shock sharing between a retailer and supplier, we demonstrate and characterize when this result does not generalize to upstream supply chain players. We then show that demand propagates through a supply chain where any player may share nothing, its demand, or its full information shocks (FIS) with an adjacent upstream player as quasi‐ARMA in—quasi‐ARMA out. We also provide a convenient form for the propagation of demand in a supply chain that will lend itself to future research applications. © 2014 Wiley Periodicals, Inc. Naval Research Logistics 61: 515–531, 2014 相似文献