首页> 外文会议>Conference on Enabling Technologies for Simulation Scinence VIII; 20040413-20040415; Orlando,FL; US >Integrated development of light armoured vehicles based on war-gaming simulators
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Integrated development of light armoured vehicles based on war-gaming simulators

机译:基于战争游戏模拟器的轻型装甲车的综合开发

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Vehicles are evolving into vehicle networks through improved sensors, computers and communications. Unless carefully planned, these complex systems can result in excessive crew workload and difficulty in optimizing the use of the vehicle. To overcome these problems, a war-gaming simulator is being developed as a common platform to integrate contributions from three different groups. The simulator, OneSAF, is used to integrate simplified models of technology and natural phenomena from scientists and engineers with tactics and doctrine from the military and analyzed in detail by operations analysts. This approach ensures the modelling of processes known to be important regardless of the level of information available about the system. Vehicle survivability can be improved as well with better sensors, computers and countermeasures to detect and avoid or destroy threats. To improve threat detection and reliability, Defensive Aids Suite (DAS) designs are based on three complementary sensor technologies including: acoustics, visible and infrared optics and radar. Both active armour and softkill countermeasures are considered. In a typical scenario, a search radar, providing continuous hemispherical coverage, detects and classifies the threat and cues a tracking radar. Data from the tracking radar is processed and an explosive grenade is launched to destroy or deflect the threat. The angle of attack and velocity from the search radar can be used by the soft-kill system to carry out an infrared search and track or an illuminated range-gated scan for the threat platform. Upon detection, obscuration, countermanoeuvres and counterfire can be used against the threat. The sensor suite is completed by acoustic detection of muzzle blast and shock waves. Automation and networking at the platoon level contribute to improved vehicle survivability. Sensor data fusion is essential in avoiding catastrophic failure of the DAS. The modular DAS components can be used with Light Armoured Vehicle (LAV) variants including: armoured personnel carriers and direct-fire support vehicles. OneSAF will be used to assess the performance of these DAS-equipped vehicles on a virtual battlefield.
机译:通过改进的传感器,计算机和通信,车辆正在演变为车辆网络。除非经过仔细计划,否则这些复杂的系统会导致机组人员工作量过多,并且难以优化车辆的使用。为了克服这些问题,正在开发一种战争游戏模拟器,作为整合三个不同团体的贡献的通用平台。模拟器OneSAF用于将科学家和工程师的技术和自然现象的简化模型与军方的战术和学说进行集成,并由运营分析师进行详细分析。这种方法可确保已知的过程建模非常重要,无论有关系统的可用信息级别如何。更好的传感器,计算机和对策可以检测,避免或消除威胁,从而提高车辆的生存能力。为了提高威胁检测和可靠性,防御艾滋病套件(DAS)的设计基于三种互补的传感器技术,包括:声学,可见光和红外光学以及雷达。同时考虑了主动装甲和软杀对策。在典型情况下,提供连续半球覆盖范围的搜索雷达可以对威胁进行检测和分类,并提示跟踪雷达。处理来自跟踪雷达的数据,并发射一枚炸药榴弹以摧毁或偏转威胁。软性杀伤系统可以使用来自搜索雷达的攻角和速度来对威胁平台执行红外搜索和跟踪或照明远距离选通扫描。一旦发现,可以使用遮盖物,反操纵和反火来抵抗威胁。传感器套件通过对枪口爆炸和冲击波的声学检测完成。排级的自动化和联网有助于提高车辆的生存能力。传感器数据融合对于避免DAS的灾难性故障至关重要。模块化DAS组件可与轻型装甲车(LAV)一起使用,包括:装甲运兵车和直接火力支援车。 OneSAF将用于评估这些配备DAS的车辆在虚拟战场上的性能。

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