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Analysis of the flight trajectory characteristics of North Korea SLBM due to launching mode

机译:朝鲜SLBM发射模式的飞行轨迹特征分析。

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The current research aims to simulate the flight trajectory of the North Korean submarine-launched ballistic missile (SLBM) and analyze its flight characteristics based on its range control method. Recently, North Korea has completed the test flight of SLBM and it has become a significant threat to international security. North Korea obtained SLBM technologies from Russia while disbanding decommissioned Russian submarines, and it is suspected that North Korea will continue to experiment in related fields along with its continued attempts to miniaturize nuclear weapons. If North Korea completes the development of SLBM and deploys the missiles, it means the completion of the three asymmetric warfare elements (nuclear weapon, ballistic missile, and submarine) and they will be the most significant threats to northeast Asia. Therefore, it is imperative to scientifically analyze SLBM to adeptly respond to such threat. One characteristic of SLBM is capability of attacking its target in a variety of ways based on its range control method. Based on this fact, the current research derives the flight equation of North Korean SLBM and simulates its flight trajectory based on various range control methods. The flight trajectories that we derive can be used to establish an effective anti-ballistic missile defense system in northeast Asia.
机译:目前的研究旨在模拟朝鲜潜射弹道导弹(SLBM)的飞行轨迹,并基于其射程控制方法分析其飞行特性。最近,朝鲜已经完成了SLBM的试飞,已经成为对国际安全的重大威胁。朝鲜在解散退役的俄罗斯潜艇时从俄罗斯获得了SLBM技术,怀疑北朝鲜将继续在相关领域进行试验,并继续努力使核武器小型化。如果朝鲜完成SLBM的发展并部署导弹,则意味着三个不对称战争要素(核武器,弹道导弹和潜艇)的完成,这将是对东北亚的最大威胁。因此,必须对SLBM进行科学分析以熟练应对此类威胁。 SLBM的一个特点是能够根据其射程控制方法以多种方式攻击其目标。基于这一事实,当前的研究推导了朝鲜SLBM的飞行方程,并基于各种航程控制方法来模拟其飞行轨迹。我们得出的飞行轨迹可用于在东北亚建立有效的反弹道导弹防御系统。

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