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首页> 外文期刊>IEEE Transactions on Aerospace and Electronic Systems >Flight path estimation using frequency measurements from a wideaperture acoustic array
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Flight path estimation using frequency measurements from a wideaperture acoustic array

机译:使用广角声阵列的频率测量值估算飞行路径

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A narrowband technique based on the acoustical Doppler effect is proposed for estimating the trajectory of a turbo-prop aircraft in level flight with constant velocity as it transits over a ground-based passive acoustic sensor array. The basic principle is to measure the temporal variation of the instantaneous frequency (IF) of the acoustic signal received by each sensor and then to minimize the sum of the squared deviations of the IF estimates from their predicted values over a sufficiently long period of time for all sensors. The technique provides estimates of the propeller blade rate and the five source motion parameters that describe the aircraft trajectory. The six dimensional minimization problem is reduced to a five dimensional maximization problem, which is solved numerically using the quasi-Newton method. A simple method is described that provides the initial parameter estimates required for the numerical maximization. The effectiveness of the motion parameter estimation technique is verified using real acoustic data recorded from a wide aperture microphone array during various transits of a turbo-prop aircraft
机译:提出了一种基于声学多普勒效应的窄带技术,用于估计涡轮螺旋桨飞机在匀速飞行中经过地面无源声传感器阵列时的匀速飞行轨迹。基本原理是测量每个传感器接收到的声音信号的瞬时频率(IF)的时间变化,然后在足够长的时间段内最小化IF估计值与它们的预测值的平方偏差之和。所有传感器。该技术提供了螺旋桨叶片速率的估计值和描述飞机轨迹的五个源运动参数。将六维最小化问题简化为五维最大化问题,可以使用拟牛顿法对其进行数值求解。描述了一种简单的方法,该方法提供了数值最大化所需的初始参数估计。在涡轮螺旋桨飞机的各种飞行过程中,使用从大孔径麦克风阵列记录的真实声学数据验证了运动参数估计技术的有效性

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