模拟纽约假想UAM车辆及营运的车队噪音

Patricia C. Glaab, F. Wieland, M. Santos, Rohit Sharma, Ralph Tamburro, Paul U. Lee
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引用次数: 5

摘要

本文介绍了使用Metrosim对纽约(NY)两种不同场景下的概念城市空中交通(UAM)式车辆进行系统级模拟的结果。UAM是一个航空工业术语,指的是客运或货运航空运输服务,通常是自动化的,在城市/城市环境中运行。uam型飞行器预计将采用垂直起降和固定翼巡航飞行。Metrosim是一个城域范围内的路线和机场规划工具,也可以在独立模式下作为仿真工具使用。本文描述和报道的场景被用来评估该工具的船队噪声预测能力。这项工作是美国国家航空航天局(NASA)、智能自动化公司(IAI)以及纽约和新泽西港务局(PANYNJ)之间的合作成果。其中一个场景是将空中出租车业务从曼哈顿周围现有的直升机停机坪扩展到纽约的主要机场。另一个案例代表了一个更长远的愿景,通勤者使用个人飞行器到达纽约郊外的枢纽地点,空中出租车服务经常运行到曼哈顿内的几个关键地点。在这两种情况下,为整个机队创建的轨迹被传递给飞机环境设计工具(AEDT),以生成昼夜水平(DNL)噪声轮廓以进行检查。在没有实际UAM车辆数据的情况下,替代AEDT经验噪声-功率-距离(NPD)表使用了类似尺寸的当前直升机作为基线,并将相同数据的一个版本线性缩放为可能的UAM噪声数据。本文提供了两种方案配置的详细信息,并提供了基线和降低噪声DNL情况的输出噪声轮廓。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulating Fleet Noise for Notional UAM Vehicles and Operations in New York
This paper presents the results of systems-level simulations using Metrosim that were conducted for notional Urban Air Mobility (UAM)-style vehicles analyzed for two different scenarios for New York (NY). UAM is an aviation industry term for passenger or cargo-carrying air transportation services, which are often automated, operating in an urban/city environment. UAM-style vehicles are expected to use vertical takeoff and landing with fixed wing cruise flight. Metrosim is a metroplex-wide route and airport planning tool that can also be used in standalone mode as a simulation tool. The scenarios described and reported in this paper were used to evaluate a fleet noise prediction capability for this tool. The work was a collaborative effort between the National Aeronautics and Space Administration (NASA), Intelligent Automation, Inc (IAI), and the Port Authority of New York and New Jersey (PANYNJ). One scenario was designed to represent an expanded air-taxi operation from existing helipads around Manhattan to the major New York airports. The other case represented a farther term vision case with commuters using personal air vehicles to hub location just outside New York, with an air-taxi service running frequent connector trips to a few key locations inside Manhattan. For both scenarios, the trajectories created for the entire fleet were passed to the Aircraft Environmental Design Tool (AEDT) to generate Day-Night Level (DNL) noise contours for inspection. Without data for actual UAM vehicles available, surrogate AEDT empirical Noise-Power-Distance (NPD) tables used a similar sized current day helicopter as the Baseline, and a version of that same data linearly scaled as the first guess at possible UAM noise data. Details are provided for each of the two scenario configurations, and the output noise contours are presented for the Baseline and reduced noise DNL cases.
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