A Reduced-Order Frequency Invariant Robust Super Directional Beamforming Algorithm
A super-pointing and beam-based technology, applied in direction finders using electromagnetic waves, etc., can solve problems such as changes, filter white noise gain, directivity factor spatial response cannot be controlled independently, and is not suitable for extracting broadband signals, etc., to achieve good results Effects of Frequency Consistency and White Noise Gain Improvement
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[0121] Such as figure 1 As shown, wherein M=10, δ=2cm, M′=4, γ=2, design a super-directional beamforming with a 12dB directivity factor with an M=10 array element microphone array with an array element spacing of δ=2cm filter. Therefore, the required M' satisfies,
[0122] 10logM' 2 =12
[0123] It is not difficult to find that the corresponding M' is equal to 4.
[0124] (a.1), (a.2) and (a.3) are the beam patterns of h′(ω), h″(ω), and h(ω). For the convenience of comparison, the traditional super-pointing The directivity factor and white noise gain of the array, the reduced-order superdirectional array maximizing the white noise gain criterion, and the superdirectional array under the white noise gain constraint are plotted in (b.1) and (b.2). The traditional The beam pattern of the super-directional array is the same as that of h′(ω), the reduced-order super-directional array that maximizes the white noise gain criterion and the beam pattern of the super-directional ar...
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