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Evaluating of the benefits of allowing flight level and mach number adjustment for fuel efficiency for flight operations in oceanic airspace

机译:评估允许调整飞行高度和马赫数以提高海洋领空飞行操作的燃油效率的好处

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Satellite-based technologies (e.g., Automatic Dependent Surveillance (ADS) - Contract and space-based ADS - Broadcast) have been introduced to improve the surveillance and communication over the airspace in remote areas. In this paper, we evaluated two improvements that could improve the flight operations in remote oceanic airspace. The first one is to allow more step climbs for fuel efficiency. The second one is to allow Mach number adjustment for fuel efficiency. We believe that both of them could be enabled by satellite-based surveillance and communication technologies. A microscopic simulation model is developed to evaluate the benefits of the two improvements in terms of fuel and time consumptions. We evaluated the benefits of three possible implementations of the two improvements (i.e., allow step climbs only, allow Mach number adjustment only, and the combination of the two) for flight operations in the oceanic airspace (i.e., ZNY) managed by New York air traffic control centers.
机译:已引入基于卫星的技术(例如,自动相关监视(ADS)-合同和基于空间的ADS-广播),以改善偏远地区空域的监视和通信。在本文中,我们评估了两项可以改善偏远海洋领空飞行操作的改进措施。第一个是允许更多的爬坡以提高燃油效率。第二个是允许对马赫数进行调整以提高燃油效率。我们认为,这两种技术都可以通过基于卫星的监视和通信技术来实现。开发了微观仿真模型,以评估这两项改进在燃料和时间消耗方面的优势。我们评估了这两项改进的三种可能实施方式(即仅允许逐步爬升,仅允许马赫数调整以及两者的结合)对于纽约航空管理的海洋领空(即ZNY)中的飞行操作的好处。交通控制中心。

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