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首页> 外文期刊>IEEE Aerospace and Electronic Systems Magazine >Hybridizing contemporary glide slopes to provide vertical guidancefor GPS approaches
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Hybridizing contemporary glide slopes to provide vertical guidancefor GPS approaches

机译:混合现代滑坡以为GPS方法提供垂直指导

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Vertical guidance for an instrument approach to landing during conditions of reduced visibility is a crucial element with respect to safety of flight. It is noteworthy that this vertical component-to be most useful and safe-must desirably provide the pilot with no more than several feet of uncertainty. Unfortunately, with GPS the vertical portion of the position information supplied the pilot by GPS signals is the least precise because of geometries involved. Augmentation for enhancement of accuracy is quite important and the assertion is that it is necessary for totally safe vertical guidance. Evidence from approximately 60 years of experience with electronic landing systems serving the public is that there has been no aircraft accident due to a defective vertical guidance signal. Visibilities as low as 600 feet horizontally can exist at certain airports and landings can still be accomplished. These landings, while not common, are being accomplished flawlessly by contemporary aircraft and equipment. Many aspects of the contemporary UHF glide slope have been studied during its half-century of use. This paper reports on advances, some of them quite recent, that make it realistic to claim that a glide slope can be sited for Category I operation at any runway that meets the physical requirements for this type of operation. For the UHF glide slope, siting imperfections are accommodated by using one of five available types of contemporary glide slope systems or derivatives thereof. This paper reviews how accommodations are achieved in practical cases. Results from earlier tests are identified which show hybridizing of UHF glide slopes and GPS can be used to provide good approach guidance to aircraft making fully automatic approaches to touchdown
机译:在能见度降低的情况下,仪表进近着陆的垂直引导是飞行安全的关键要素。值得注意的是,垂直组件是最有用和最安全的,它必须为飞行员提供不超过几英尺的不确定性。不幸的是,由于涉及几何形状,对于GPS,飞行员通过GPS信号提供的位置信息的垂直部分最不精确。增强以提高准确性非常重要,并且断言必须完全安全地进行垂直引导。从为公众服务的电子着陆系统大约60年的经验证明,没有因垂直导向信号不良而导致飞机失事。在某些机场,水平能见度低至600英尺,并且仍然可以完成降落。这些降落虽然不常见,但可以通过现代飞机和设备完美地完成。在使用半个世纪以来,已经研究了当代UHF滑坡的许多方面。本文报告了一些进步,其中一些是最近才取得的进展,因此可以断言,可以在满足此类运行的物理要求的任何跑道上为I类运行设置滑坡。对于UHF滑坡,通过使用五种可用类型的现代滑坡系统或其派生中的一种来容纳选址缺陷。本文回顾了在实际情况下如何实现住宿。确定了较早测试的结果,这些结果表明UHF滑坡的混合和GPS可用于为飞机进行全自动着陆提供良好的进近指导

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