FIELD: wireless communication.
SUBSTANCE: invention relates to the field of wireless communication. The mentioned technical result is achieved by the fact that the system contains N arrays with apertures from M1 to MN inclusive, respectively, with N ≥ 2, M1 ≥ 2, and each number from M2 to MN inclusive ≥ 1, a significant number of apertures from M1 apertures in the first array are made with the ability to send an electromagnetic wave signal to a significant number of apertures from M2 apertures in the second array to MN apertures in the Nth array inclusive, and a significant number of apertures from M2 apertures in the second array to MN apertures in the Nth array, inclusive, receiving an electromagnetic wave signal from a significant number of apertures from M1 apertures in the first array, are made with the ability to redirect the received electromagnetic wave signal back to a significant number of apertures from M1 apertures in the first array, and a significant number of apertures from M1 apertures in the first array is additionally made with the ability to send an electromagnetic wave signal to another aperture from M1 apertures in the first array after receiving a redirected electromagnetic wave signal from the MNth aperture in the Nth array.
EFFECT: increase in the path length of the electromagnetic wave signal passing between the apertures.
48 cl, 4 dwg
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Authors
Dates
2021-09-07—Published
2019-08-09—Filed