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Flight demonstration of flight termination system and solid rocket motor ignition using semiconductor laser initiated ordnance

机译:使用半导体激光引发弹药的飞行终止系统和固体火箭发动机点火的飞行演示

摘要

Solid State Laser Initiated Ordnance (LIO) offers new technology having potential for enhanced safety, reduced costs, and improved operational efficiency. Concerns over the absence of programmatic applications of the technology, which has prevented acceptance by flight programs, should be abated since LIO has now been operationally implemented by the Laser Initiated Ordnance Sounding Rocket Demonstration (LOSRD) Program. The first launch of solid state laser diode LIO at the NASA Wallops Flight Facility (WFF) occurred on March 15, 1995 with all mission objectives accomplished. This project, Phase 3 of a series of three NASA Headquarters LIO demonstration initiatives, accomplished its objective by the flight of a dedicated, all-LIO sounding rocket mission using a two-stage Nike-Orion launch vehicle. LIO flight hardware, made by The Ensign-Bickford Company under NASA's first Cooperative Agreement with Profit Making Organizations, safely initiated three demanding pyrotechnic sequence events, namely, solid rocket motor ignition from the ground and in flight, and flight termination, i.e., as a Flight Termination System (FTS). A flight LIO system was designed, built, tested, and flown to support the objectives of quickly and inexpensively putting LIO through ground and flight operational paces. The hardware was fully qualified for this mission, including component testing as well as a full-scale system test. The launch accomplished all mission objectives in less than 11 months from proposal receipt. This paper concentrates on accomplishments of the ordnance aspects of the program and on the program's implementation and results. While this program does not generically qualify LIO for all applications, it demonstrated the safety, technical, and operational feasibility of those two most demanding applications, using an all solid state safe and arm system in critical flight applications.
机译:固态激光起爆弹药(LIO)提供了新技术,具有增强安全性,降低成本和提高运营效率的潜力。由于LIO已由激光发射弹药探空火箭示范计划(LOSRD)实施,因此,对于这种技术缺乏程序应用的担忧(这已阻止了飞行程序的接受)应得到缓解。固态激光二极管LIO于1995年3月15日在NASA Wallops飞行设施(WFF)上首次发射,并完成了所有任务目标。这个项目是美国国家航空航天局(NASA)总部三个LIO演示计划系列的第3阶段,通过使用两级Nike-Orion运载火箭进行专门的全LIO探空火箭飞行任务来实现其目标。 LIO飞行硬件由Ensign-Bickford公司根据NASA与获利组织的第一份合作协议制造,安全地启动了三个要求严格的烟火顺序事件,即从地面和飞行中固体火箭发动机点火,以及飞行终止,即飞行终止系统(FTS)。设计,建造,测试和飞行了飞行LIO系统,以支持快速廉价地使LIO适应地面和飞行运行节奏的目标。硬件完全可以胜任此任务,包括组件测试以及全面的系统测试。发射完成后不到11个月就完成了所有任务目标。本文着重于该计划军械方面的成就以及该计划的实施和结果。尽管该程序并未使LIO完全适合所有应用,但它在关键的飞行应用中使用了全固态安全和手臂系统,展示了这两个最苛刻应用的安全性,技术和操作可行性。

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