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Corporate responsibility for the U.S. Air Navigation Service Provider: A decision support tool to reduce CO2 emissions from en-route flights

机译:对美国空中航行服务提供商的企业责任:一种决策支持工具,可减少途中航班的二氧化碳排放量

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The rise in aviation-related emissions accompanying the increase in demand for air travel is raising concerns about aviation's impact on the climate. There is a growing public interest in climate change issues as a body of activists drives corporations to heed environmental concerns. The Federal Aviation Administration (FAA), the Air Navigation Service Provider (ANSP) for the U.S., controls the transit time for flights in its airspace, which is a major factor that determines the fuel burn and emissions produced. However, the FAA has no current system to estimate emissions from en-route operations, measure performance and set targets for improvement. The purpose of this paper is to provide the U.S. ANSP, the FAA, with a decision support tool to estimate the amount of CO2 emissions produced from en-route flights and analyze alternative routes to increase the ANSP's performance in regard to CO2 taking into consideration the workload of the air traffic controllers. The focus of the analysis is to reduce the flight transit time. The alternatives are Near Wind Optimal Routes (NWORs) for flights in one or more of the four distance categories of the baseline (Flights flying: less than 500, from 500 to 999, from 1000 to 1500 and greater than 1500 nautical miles). The tool, Aircraft Emissions Decision Support Tool (AEDST), is a deterministic model developed to calculate the fuel burn and emissions for any aircraft given the 4-D trajectory data (longitude, latitude, altitude, velocity, time) and the fuel burn rate per unit time at different phases of the flight. The Future Air Traffic Management Concepts Evaluation Tool (FACET) was used to calculate the number of conflicts between flights, which represent the air traffic controllers' workload. The results show the improvement in the ANSP's performance by implementing NWORs for flight distances less than 1500 nautical miles by 19%, which provide the airlines with approximately $16M in fuel savings. Im- lementing those routes also reduces the workload of air traffic controllers by 2.5%.
机译:随着航空旅行需求的增长,与航空有关的排放量增加,这引起了人们对航空对气候影响的担忧。随着一系列积极分子驱使企业关注环境问题,公众对气候变化问题的兴趣与日俱增。美国空中航行服务提供商(ANSP),美国联邦航空管理局(FAA)控制其领空内航班的飞行时间,这是决定燃油燃烧和产生的排放量的主要因素。但是,FAA没有当前的系统来估算航路操作产生的排放,测量性能并设定改进目标。本文的目的是为美国空中航行服务提供者FAA提供决策支持工具,以估算在途飞行中产生的CO 2 排放量并分析替代航线以提高空中航行服务提供者的绩效关于CO 2 ,并考虑了空中交通管制员的工作量。分析的重点是减少飞行时间。替代方法是针对基线的四个距离类别中的一个或多个飞行的近风最佳航线(NWOR)(飞行的飞行:小于500,从500到999,从1000到1500和大于1500海里)。飞机排放决策支持工具(AEDST)是一种确定性模型,旨在根据给定的4D轨迹数据(经度,纬度,高度,速度,时间)和燃油消耗率来计算任何飞机的燃油消耗和排放。在飞行的不同阶段每单位时间。未来空中交通管理概念评估工具(FACET)用于计算航班之间的冲突次数,这代表了空中交通管制员的工作量。结果表明,通过对小于1500海里的飞行距离实施NWOR,可提高ANSP的性能19%,从而为航空公司节省了大约1600万美元的燃油。实施这些路线还可以将空中交通管制员的工作量减少2.5%。

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