评估基于时间的地面计量的战术调度方案

S. Zelinski, R. Windhorst
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引用次数: 3

摘要

本文介绍了NASA空域技术演示2 (ATD-2)子项目最新战术调度设计的参数分析,该项目致力于在夏洛特道格拉斯国际机场(CLT)演示基于时间的地面计量。战术调度程序设计在CLT的快速仿真模型中使用NASA的地面操作模拟器和调度程序实现。战术调度程序由三个基本功能支持:轨迹预测、跑道调度和咨询生成。咨询生成函数的一个关键参数是根据跑道计划计算目标登机口推后次数时使用的滑行时间延迟缓冲器。分析了不同滑行时间延迟缓冲量的多个仿真,以确定对战术调度程序性能的影响。结果表明,当缓冲区足够大时,战术调度器的性能得到改善,以便尽早释放离场,以保持调度器预测的跑道吞吐量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessing tactical scheduling options for time-based surface metering
This paper presents a parametric analysis of the most recent tactical scheduler design for NASA's Airspace Technology Demonstration 2 (ATD-2) sub-project, committed to demonstrating time-based surface metering at Charlotte Douglas International Airport (CLT). The tactical scheduler design is implemented in a fast-time simulation model of CLT using NASA's Surface Operations Simulator and Scheduler. The tactical scheduler is supported by three basic functions: trajectory prediction, runway scheduling, and advisory generation. A key parameter of the advisory generation function is the taxi time delay buffer used when calculating target gate pushback times from runway schedule. Multiple simulations that varied the amount of taxi time delay buffer were analyzed to determine the effect on tactical scheduler performance. The results show an improvement in tactical scheduler performance when the buffer is made sufficiently large to release departures from their gates early enough to maintain scheduler predicted runway throughput.
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