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Simulation of IFR Helicopter Operations in the Gulf of Mexico Low-Altitude Airspace

机译:墨西哥湾低空领空的IFR直升机操作模拟

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This paper describes a model and simulation of offshore Instrument Flight Rules (IFR) helicopter operations originating from Intracoastal City, Louisiana, into the Gulf of Mexico. The existing en route airspace structure of Houston Center's Offshore Sector below 7,000 ft, and the instrument approaches at Intracoastal City, both based on Global Positioning System navigation, were modeled in detail. The established Air Traffic Control (ATC) procedures of Lafayette Approach Control (LFT) and Houston Center were modeled to ensure that the simulated traffic flows reflected those that are followed in actual IFR operations. Three scenarios were simulated, one scenario in the existing, predominantly non-radar environment, and two in hypothetical radar environments. The results of these simulations were used to evaluate the capacity improvements gained through introduction of radar and direct pilot/controller communication into the terminal and the en route areas of the Gulf of Mexico. The baseline scenario results indicate that there were significant delays attributable to capacity constraints at Intracoastal City. A large delay reduction was obtained by adding the terminal-area radar and a further reduction in delays was obtained by adding the en route radar.
机译:本文描述了从路易斯安那州内陆城到墨西哥湾的海上仪表飞行规则(IFR)直升机操作的模型和仿真。详细建模了休斯顿中心离岸区域低于7,000英尺的现有途中空域结构以及沿海地区内的仪表进近,这两种方法均基于全球定位系统导航。对已建立的拉斐特进场控制(LFT)和休斯顿中心的空中交通管制(ATC)程序进行建模,以确保模拟的交通流能够反映实际IFR操作中遵循的交通流。模拟了三种情况,一种是在现有的(主要是非雷达)环境中,另一种是在假设的雷达环境中。这些仿真的结果用于评估通过将雷达和飞行员/控制器直接通信引入墨西哥湾的航站区和航路区域而获得的能力提升。基准情景的结果表明,沿海城市的运力严重受限。通过添加终端区域雷达可以大大减少延迟,而通过添加航路雷达可以进一步降低延迟。

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