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Night Vision Imaging Systems Development, Integration and Verification in Military Fighter Aircraft

机译:军用战斗机的夜视成像系统开发,集成和验证

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This paper describes the research and experimental flight testactivities conducted by the Italian Air Force Official Test Centre (RSV) in collaboration with Alenia S.p.A. and Cranfiled University, in order to confer the Night Vision Imaging Systems (NVIS) capability to the Italian TORNADO IDS (Interdiction and Strike) and ECR (Electronic Combat and Reconnaissance) aircraft. The activities included various Design, Development, Test and Evaluation (DDT&E) activities, including Night Vision Goggles (NVG) integration, cockpit instruments and external lighting modifications, as well as various ground test sessions and a total of eighteen flight test sorties. RSV and Litton Precision Products were responsible of coordinating and conducting the installation activities of the internal and external lights. Particularly, an iterative process was established, allowing an in-site rapid correction of the major deficiencies encountered during the ground and flight test sessions. Both single-ship (dayight) and formation (night) flights were performed, shared between the Test Crews involved in the activities, allowing for a redundant examination of the various test items by all participants. An innovative test matrix was developed and implemented by RSV for assessing the operational suitability and effectiveness of the various modifications implemented. Also important was definition of test criteria for Pilot and Weapon Systems Officer (WSO) workload assessment during the accomplishment of various operational tasks during NVG missions. Furthermore, the specific technical and operational elements required for evaluating the modified helmets were identified, allowing an exhaustive comparative evaluation of the two proposed solutions (i.e., HGU-55P and HGU-55G modified helmets). The results of the activities were very satisfactory. The initial compatibility problems encountered were progressively mitigated by incorporating modifications both in the front and rear cockpits at the various stages of the test campaign. This process allowed a considerable enhancement of the TORNADO NVIS configuration, giving a good medium-high level NVG operational capability to the aircraft. Further developments also include the internal/external lighting for the Italian TORNADO “Mid Life Update” (MLU) and other programs, such as the AM-X aircraft internal/external lights modification/testing and the activities addressing low-altitude NVG operations with fast jets (e.g., TORNADO, AM- X, MB-339CD), a major issue being the safe ejection of aircrew with NVG and NVG modified helmets. Two options have been identified for solving this problem: namely the modification of the current Gentex HGU-55 helmets and the design of a new helmet incorporating a reliable NVG connection/disconnection device (i.e., a mechanical system fully integrated in the helmet frame), with embedded automatic disconnection capability in case of ejection. Other relevant issues to be accounted for in these new developments are the helmet dimensions and weight, the NVG usable FOV as a function of eye-relief distance, and helmet centre of gravity (moment arms) with and without NVG (impact on aircrew fatigue during training and real operational missions). analytical tools required for NVIS performance prediction and evaluation. The specific objectives of the TORNADO ground and flight test activities were the following:.
机译:本文介绍了意大利空军官方测试中心(RSV)与Alenia SpA和Cranfiled大学合作进行的研究和实验飞行测试活动,目的是将夜视成像系统(NVIS)的功能赋予意大利TORNADO IDS(Interdiction)和Strike)和ECR(电子战斗和侦察)飞机。这些活动包括各种设计,开发,测试和评估(DDT&E)活动,包括夜视镜(NVG)集成,座舱仪表和外部照明修改,以及各种地面测试环节和总共18架飞行测试架次。 RSV和Litton Precision Products负责协调和进行内部和外部照明灯的安装活动。特别是,建立了一个迭代过程,可以现场快速纠正在地面和飞行测试过程中遇到的主要缺陷。进行了单船(白天/夜晚)和编队(夜晚)飞行,由参加活动的测试人员共享,允许所有参与者重复检查各种测试项目。 RSV开发并实施了创新的测试矩阵,以评估所实施的各种修改的操作适用性和有效性。同样重要的是,在NVG任务完成各种操作任务期间,为飞行员和武器系统官员(WSO)工作量评估定义测试标准。此外,确定了评估改进头盔所需的具体技术和操作要素,从而可以对两种建议的解决方案(即HGU-55P和HGU-55G改进头盔)进行详尽的比较评估。活动结果非常令人满意。通过在测试活动的各个阶段在前后座舱中进行修改,逐渐缓解了最初遇到的兼容性问题。这个过程可以大大增强TORNADO NVIS的配置,使飞机具有良好的中高层NVG作战能力。进一步的发展还包括意大利TORNADO“中年生活更新”(MLU)的内部/外部照明以及其他计划,例如AM-X飞机内部/外部照明的修改/测试以及快速解决低空NVG操作的活动喷气式飞机(例如TORNADO,AM-X,MB-339CD),一个主要问题是使用NVG和NVG改装头盔安全地弹出机组人员。解决此问题的方法有两种:一种是对当前的Gentex HGU-55头盔进行修改,另一种是采用可靠的NVG连接/断开设备(即完全集成在头盔框架中的机械系统)设计的新头盔;具有嵌入式自动断开功能,以防弹出。这些新开发中要考虑的其他相关问题是头盔的尺寸和重量,NVG可用视场角(视眼距离的函数)以及带或不带NVG的头盔重心(力矩臂)(在飞行过程中对机组疲劳造成影响)训练和实际作战任务)。 NVIS性能预测和评估所需的分析工具。 TORNADO地面和飞行测试活动的具体目标如下:

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