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FUTURE'S OPERATION AREAS: NEW GENERATION SUPPRESSION ENEMY AIR DEFENSE (SEAD) ELEMENTS

机译:未来的运作领域:新一代抑制敌人防空(SEAD)元素

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Since air vehicles took place in the theater of operations, they have become the indispensable elements and the strongest attack power of armed forces. In the following period, with technological development, supersonic aircrafts took place in the operation area and this increased effectiveness of air vehicles much more. Air forces have used these aircrafts during important missions like strategic attack and air defense operations. On the other hand, decision makers understood that it was not feasible to intercept fighter aircrafts by executing combat air patrol flight missions. Since there is not enough reaction time to intercept the high speed aircrafts, ground stationed Surface to Air Missiles (SAM) system requirement has emerged. Therefore, SAM systems took place in the operation scene as well. Due to the fact that SAM systems emerged against the attack power, the attack aircrafts are to keep away from the fire of the ground stationed SAM systems. Hence, the requirement of Suppression Enemy Air Defense (SEAD) arose. SEAD elements take under suppression the radar of the SAM systems, hi this way, attack aircrafts are able to attack without the risk of SAM systems. The purpose of this study is to find new methods or concepts in order to protect friendly attack aircrafts against ground based surface to air missiles' fires. Modernization of SAM systems and new generation SAM system producing activities have proceeded with positive acceleration. So, current SEAD elements and concepts are not able to cover the requirements due to the increased SAM system ranges. According to the concepts, SEAD weapons' ranges must be longer than the SAM weapons' ranges to protect friendly aircrafts. In this study, new concept was offered to overcome the deficiencies of current SEAD concept. The elements of new concepts were put forward. Classic SEAD concept and new generation concepts were assessed by using SWOT analysis technique. As a result, this study has revealed that, air forces' effectiveness can be enhanced by using new generation SEAD concepts against enemy SAM systems.
机译:由于航空器在运营剧院发生,因此他们已成为不可或缺的元素和武装力量最强的攻击力。在下列期内,通过技术发展,超音速飞机发生在运营区域,而且这种增加的空气车辆的效率更多。在战略攻击和防空运营等重要任务中,空军使用这些飞机。另一方面,决策者了解,通过执行战斗空中巡逻队飞行任务,拦截战斗机是不可行的。由于没有足够的反应时间来拦截高速飞机,因此出现了对空气导弹(SAM)系统要求的地面驻扎的表面。因此,SAM系统也发生在操作场景中。由于SAM系统出现抗攻击力,攻击飞机将远离地面驻扎SAM系统的火灾。因此,抑制敌人防空剂(SEAD)的要求出现。 SEAD元素在抑制SAM系统的雷达下,嗨这种方式,攻击飞机能够在没有SAM系统的风险的情况下攻击。本研究的目的是寻找新的方法或概念,以保护友好的攻击飞机与地面的地面到空气导弹的火灾。 SAM系统的现代化和新一代SAM系统生产活动已经进行了积极的加速。因此,由于SAM系统范围增加,当前的Sead元素和概念无法覆盖这些要求。根据概念,拟锯武器的范围必须比SAM武器的范围长,以保护友好的飞机。在这项研究中,提供了新的概念来克服当前的Sead概念的缺陷。提出了新概念的要素。通过使用SWOT分析技术评估经典的SEAD概念和新一代概念。因此,本研究表明,通过利用对敌人SAM系统的新一代SEAD概念可以增强空军的有效性。

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