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LOCO GPSI: Preserve the GPS advantage for defense and security

机译:LOCO GPSI:保留GPS在防御和安全方面的优势

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Global Positioning System (CPS) has clearly emerged as a fundamental utility with widespread private and commercial civilian applications. Many of these applications are directly related to safety-of-life uses such as all-weather aircraft precision approach and landing, ship navigation in restricted waters, and emergency response vehicle tracking and management. CPS has significantly improved efficiency in commercial applications such as truck, train, and even Individual container tracking and dispatch. There is a similar dependency within the military not only in vehicle navigation but also in areas such as precision weapon guidance and "blue force" tracking. This dependency on CPS has brought significant attention on the potential for an asymmetric vulnerability on this low signal power radio navigation system. Threat systems to GPS exist, are commercially available, and have been used in combat. The technology is not complex, and even simple, low cost systems could cause significant CPS denial. Furthermore, as other Global Navigation Satellite Systems gain maturity and wide-spread use, one can easily imagine the threat expanding to cover those systems as well. In this paper, we describe a project that was directed by congress starting in 1997 to develop the capability to detect and locate sources of unintentional interference and intentional jamming, and to assess the effectiveness and utility of such a system. Under this project, SPAWAR Systems Center and FALON Incorporated have successfully developed and demonstrated a prototype system small enough to be compatible with Unmanned Aerial Vehicles named Location of CPS Interferers (LOCO GPSI). The LOCO GPSI system employs short baseline antenna interferometry and a highly sensitive, rapidly scanning receiver to detect and precisely Direction Find (DF) the interference source. Interference source location is determined by triangulating successive DF lines of position. Ground and flight demonstration results suggest that performance objectives have been met.
机译:全球定位系统(CPS)显然已作为一种基本用途而出现,广泛应用于私人和商业民用领域。这些应用中的许多都与生命安全直接相关,例如全天候飞机的精确进场和着陆,受限水域中的船舶导航以及应急车辆跟踪和管理。 CPS大大提高了商业应用的效率,例如卡车,火车,甚至单个集装箱的跟踪和调度。不仅在车辆导航中,而且在精确武器制导和“蓝军”追踪等领域,军方也存在类似的依赖关系。这种对CPS的依赖引起了人们对这种低信号功率无线电导航系统上不对称漏洞潜在可能性的极大关注。 GPS威胁系统已经存在,可以在市场上买到,并且已经用于战斗中。该技术并不复杂,甚至简单,低成本的系统也可能导致严重的CPS拒绝。此外,随着其他全球导航卫星系统的成熟和广泛使用,人们可以轻易地想象到威胁也将扩展到这些系统。在本文中,我们描述了一个由国会领导的项目,该项目始于1997年,目的是提高检测和定位非故意干扰和故意干扰源的能力,并评估这种系统的有效性和实用性。在该项目下,SPAWAR系统中心和FALON Incorporated成功开发并演示了一个原型系统,该系统足够小,可以与名为CPS干扰器位置(LOCO GPSI)的无人机兼容。 LOCO GPSI系统采用短基线天线干涉测量法和高度灵敏,快速扫描的接收器,以检测并精确定位方向(DF)干扰源。干扰源位置是通过对连续的DF位置线进行三角测量确定的。地面和飞行演示结果表明已达到性能目标。

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