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Consider a setup for DOA estimation consisting of an array of two microphones separated by a small distance d and a source that lies in the far field of the array.
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The male signal source is located in the far-field of the array.
The female signal source moves to the near-field of the array with range r = 0.2 m.
Considering a uniform linear array (ULA) with M omni-directional sensors, one desired signal and L interference signals impinging upon the array from different directions, and the source is in the far-field of the array.
The approach has been used to predict the result of phasing to produce a focus in air, which can be seen to be particularly effective in the near-field of the array.
Typical field resolution of the array was 8 fT/√Hz at 1 kHz and the maximum cross talk in the array was measured to be less than 2%.
The first one assumes the presence of the sound source in the far field of the microphone array.
This paper compared the surface magnetic field of the Halbach Array rail and two conventional levitation rails at first.
Hence, a small misalignment of Hclock had a stronger effect on the magnetization of the o-NW than did the fringe field of the NP array.
The first D1 sources are assumed to be far-field signals, while the remaining D2 = D - D1 sources locate within the near-field extent of the array.
When the ranges of the sources are within the near-field extent of the array, the RMSEs of the azimuths, elevations, and ranges are shown in Figure 11.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com