首页> 外文期刊>Intelligent Transportation Systems, IEEE Transactions on >Optimizing Pushback Decisions to Valuate Airport Surface Surveillance Information
【24h】

Optimizing Pushback Decisions to Valuate Airport Surface Surveillance Information

机译:优化后推决策以评估机场地面监视信息

获取原文
获取原文并翻译 | 示例
       

摘要

As airport surface surveillance technologies develop, aircraft ground position information becomes more easily available and accurate. This paper provides a better understanding of the value of future surface surveillance systems where departures, and more specifically pushback times, will be optimized. It analytically quantifies the potential benefits yielded by providing surveillance information to the agent or system that is entrusted with tactically optimizing pushback clearances under nominal conditions. A stochastic model of surface operations is developed for single-ramp surface operations and calibrated to emulate departure surface operations at LaGuardia Airport. Two levels of information are examined within a tactically optimized collaborative decision-making framework. For each level, emissions, number of taxiing aircraft, and runway utilization rate are analyzed and compared with a simple threshold policy to evaluate surface surveillance information. Safety benefits, however, are not considered in this paper. It is estimated that optimally controlling pushback clearances from a single-ramp area using detailed surface surveillance information does not provide significant benefits when compared with controlling pushback clearances using a gate-holding policy based on the number of aircraft currently taxiing. However, when the runway is functioning at intermediate capacity (50%–72% runway utilization rates), e.g., under adverse weather conditions, surveillance information may improve optimization of departure operations. In such case, emissions and the number of taxiing aircraft are reduced by up to 6% when compared with the gate-holding policy and by up to 3% when compared with the performance of an intelligent operator with limited information.
机译:随着机场地面监视技术的发展,飞机地面位置信息变得更加容易获得和准确。本文提供了对未来地面监视系统的价值的更好理解,在该系统中,离场,尤其是回退时间将得到优化。它通过分析性地量化了通过向代理或系统提供监视信息所带来的潜在利益,这些代理或系统负责在策略上优化名义条件下的推回许可。针对单匝道水面操作开发了一个随机的水面操作模型,并进行了校准以模拟拉瓜迪亚机场的离场水面操作。在策略优化的协作决策框架内检查了两个级别的信息。对于每个级别,都会分析排放量,滑行飞机的数量和跑道利用率,并与简单的阈值策略进行比较,以评估地面监视信息。但是,本文未考虑安全利益。据估计,与使用基于当前滑行的飞机数量的登机口保持策略控制后推间隙相比,使用详细的地面监视信息来最佳地控制单个斜坡区域的后推间隙不会带来明显的好处。但是,当跑道以中等容量运行(50%至72%的跑道利用率)时,例如在恶劣的天气条件下,监视信息可能会改善起飞操作的优化。在这种情况下,与门禁政策相比,排放量和滑行飞机的数量最多可减少6%,而与信息有限的智能运营商的性能相比,最多可减少3%。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号