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Exact(7)
The static power consumption estimations for the array are given, as larger arrays are feasible due to compact design.
Finally, the reconstructed shower directions and angular resolutions of the detected showers for the prototype array are given.
The elements are equally spaced around the circumference, and their positions, which are determined from the layout of array, are given in the matrix form as (11).
Following [37], the coefficients of the N multipath channel between each single-antenna UE and the sth antenna of the sector array are given by: h s n = P n σ PL σ SF M ∑ m = 1 M G n, m BS exp ( j [ k d s sin ( θ n, m, AoD ) + Φ n, m ] ), s = 1, …, 4, (3).
The basis directions associated to this array are given by (7), and the number of real directions is Q = 1 + 2⌊ΔN⌋, that we require to exceed that relevant to the actual array, i.e., ⌊ΔN⌋ > ⌊ΔM⌋, so as to achieve super-resolution.
Details of the samples on the array are given in Supplementary Table 1.
Similar(53)
A numerical solution for computing the beam pattern of a curved array is given.
First the design formula of the DOE micro-lens array is given.
Finally, some design guidance of the high-density photodiode array is given based on the discussion.
The geometric algebra model (G-MODEL) of an EM vector-sensor array is given in [17].
In Fig. 14 output power of PV array is given and clearly analysed that proposed method gives the maximum power.
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Justyna Jupowicz-Kozak
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