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Assistant based speech recognition - another pair of eyes for the Arrival Manager

机译:基于助理的语音识别-到达经理的另一双眼睛

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Nowadays Arrival Managers (AMAN) are available to produce efficient inbound traffic sequences and to create guidance advisories for optimized approaches. Information about deviations from the planned sequence is exchanged between controller and pilot via radio communication. The AMAN is only able to derive these deviations from the radar data. Using radar data as single input sensor, however, results in adaptation delays of 30 seconds and more - and even worse, the controllers' intent is still missing. The AcListant® AMAN (Active Listening Assistant) [1] has shown for the Dusseldorf Approach Area how to avoid this sensor delay by analyzing the controller-pilot-communication and using the gained information as an additional sensor. An Assistant Based Speech Recognition system (ABSR) is embedded in an AMAN, which provides a dynamic minimized world model to the speech recognizer. Validation trials were performed from February to March 2015 with seven male and four female air traffic controllers from Dusseldorf, Frankfurt, Munich, Vienna, and Prague. Depending on the accepted rejection rate of the speech recognizer, recognition rates between 90% and 95% were achieved, whereas without ABSR only rates between 58% and 83% were possible. Furthermore ABSR significantly reduces the deviation between the controllers' plan and the plan of the AMAN and, at the same time, significantly reduces the controllers workload.
机译:如今,到达管理器(AMAN)可以生成有效的入站流量序列,并为优化方法创建指导咨询。通过无线电通信在控制器和飞行员之间交换有关偏离计划序列的信息。 AMAN只能从雷达数据中得出这些偏差。但是,将雷达数据用作单个输入传感器会导致30秒钟甚至更长的自适应延迟-甚至更糟的是,控制器的意图仍然缺失。 AcListant®AMAN(主动聆听助手)[1]已针对杜塞尔多夫进近区展示了如何通过分析控制器-飞行员通信并将获得的信息用作附加传感器来避免这种传感器延迟。基于助手的语音识别系统(ABSR)嵌入在AMAN中,该系统为语音识别器提供了动态最小化的世界模型。验证试验于2015年2月至3月进行,来自杜塞尔多夫,法兰克福,慕尼黑,维也纳和布拉格的7名男性和4名女性空中交通管制员进行了验证。根据公认的语音识别器拒绝率,可以实现90%至95%的识别率,而没有ABSR,则只能达到58%至83%的识别率。此外,ABSR大大减少了控制器计划与AMAN计划之间的偏差,同时,大大减少了控制器的工作量。

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