一种新的飞机噪声影响评价平台设计

Chuyang Yang, Zachary A. Marshall, John H. Mott
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引用次数: 2

摘要

减少飞机噪音污染是管理环境相互作用的核心目标,与减少航空排放的目标本质上是一致的。由于噪音污染会限制土地分区和航班模式,从而对机场的运营和扩建产生不利影响,因此开发精确的噪音产生和传播模型势在必行。为了尽量减少飞机噪音的影响,需要精确地绘制出飞机噪音的几何分布。美国联邦航空管理局(FAA)利用航空环境设计工具(AEDT)来模拟飞机噪音、排放和空气质量后果,以符合法规和系统规划。当用户执行AEDT以计算噪声暴露水平时,需要飞机运行和机队混合数据。然而,这些数据很难从缺乏专职空中交通设施和人员的无塔台机场获得。研究人员开发的几种机场运行估计方法在测试时显示出准确性和成本效益的局限性,限制了它们在噪声建模方面的有用性。与此同时,通过机载应答器数据跟踪飞机被证实是评估无塔台机场飞机运行情况的一种经济有效的方法。作者设计了一个由三个模块组成的平台。通过部署廉价的硬件来收集飞机应答器信号,可以在第一个模块中估计飞行操作和飞机性能参数。第二个模块通过整合来自EUROCONTROL飞机噪声与性能(ANP)数据库的噪声、功率、距离(NPD)数据来估计飞机的噪声水平。第三个模块基于地理信息系统(GIS)平台可视化机场噪声影响。此外,本文还进行了风险评估和可持续性分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Novel Platform Design for Aircraft Noise Impact Assessment
Mitigation of aircraft noise pollution is a core goal of managing environmental interactions and inherently aligns with the aim of reducing aviation emissions. As noise pollution adversely affects the operation and expansion of airports by restricting land zoning and flight patterns, developing precise noise generation and propagation models is imperative. Efforts to minimize the impact of aircraft noise are influenced by the accurate mapping of the geometric distribution of that noise. The Federal Aviation Administration (FAA) utilizes the Aviation Environmental Design Tool (AEDT) to model aircraft noise, emissions, and air quality consequences for regulatory compliance and system planning. Aircraft operations and fleet mix data are required when users execute AEDT to compute the noise exposure level. However, such data are difficult to obtain from non-towered airports that lack full-time air traffic facilities and personnel. Several airport operations estimation approaches developed by researchers have shown limitations in accuracy and cost-efficiency of deployment when tested, limiting their usefulness with regards to noise modeling. Meanwhile, tracking aircraft through onboard transponder data was validated as a cost-effective approach to estimate aircraft operations at non-towered airports.The authors designed a platform consisting of three modules. Flight operations and aircraft performance parameters can be estimated in the first module by deploying inexpensive hardware to collect aircraft transponder signals. The second module estimates aircraft noise levels by integrating information sources with the noise vs. power vs. distance (NPD) data from the EUROCONTROL Aircraft Noise and Performance (ANP) database. The third module visualizes airport noise impact based on a Geographic Information System (GIS) platform. Additionally, a risk assessment and a sustainability analysis are presented in this paper.
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