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A Comparison Of Serial And Parallel Processing Simulation Models Of Pilot Workload

机译:试点工作的串行和并行处理仿真模型的比较

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This paper discusses and evaluates several options for modeling a pilot while he performs normal cockpit duties. Using a queueing analogy, with the pilot modeled as the server and the pilot's tasks as customers, two discrete-event simulation models were developed. The main issue examined was the relative accuracy of a model which processes tasks in series versus one which processes tasks in parallel. Each of these models employed a priority system with preemption. The serial model processed one task at a time while the number of tasks that could be processed simultaneously in the parallel model was dependent on the mix of tasks currently demanding the pilot's resources. Three different measures from the simulation models were evaluated as workload surrogates: pilot idle time, task interrruption rate, and the simulataneous task rate. Workload model predictions were validated by comparison to workload measurements taken under identical conditions in a high-fidelity flight simulator. The models' validation process suggests that the technique has merit and continued investigation is warranted.
机译:本文讨论并评估了几种选择飞行员的选项,而他执行正常驾驶舱职责。使用排队类比,使用作为服务器和飞行员的试点作为客户,开发了两个离散事件仿真模型。所检查的主要问题是模型的相对准确性,该模型处理串联的任务与一个并行处理任务的组件。这些模型中的每一个都采用了具有抢占的优先系统。串行模型一次处理了一个任务,而在并行模型中可以同时处理的任务数取决于当前要求试点资源的任务的组合。从仿真模型中的三种不同措施被评估为工作量代理:导频怠速时间,任务冲击率和模拟任务率。通过在高保真飞行模拟器中相同条件下采取的工作负载测量来验证工作负载模型预测。模型的验证过程表明该技术具有优点并保证持续调查。

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