APPARATUS AND METHOD FOR STORING WAVE SIGNALS IN A CAVITY

    公开(公告)号:WO2020028716A1

    公开(公告)日:2020-02-06

    申请号:PCT/US2019/044744

    申请日:2019-08-01

    Abstract: An apparatus comprising a cavity having interior surfaces or reflecting elements, one or more transmitters configured to receive an electrical signal, transform the electrical signal into an electromagnetic wave signal, and introduce the electromagnetic wave signal into an inside of the cavity, and one or more receivers configured to retrieve the electromagnetic wave signal, transform the electromagnetic wave signal to a corresponding electrical signal, and transmit the corresponding electrical signal to the outside of the cavity is disclosed. The electromagnetic wave signal is contained within the inside of the cavity until retrieved by undergoing a series of reflections or traversals between the interior surfaces of the cavity or the reflecting elements within the cavity. The apparatus may further comprise one or more regenerators configured to re-amplify, re-shape, and/or re-time the electromagnetic wave signal traveling within the inside of the cavity.

    SYSTEM AND METHOD FOR EXTENDING PATH LENGTH OF A WAVE SIGNAL USING ANGLE MULTIPLEXING

    公开(公告)号:WO2020033783A1

    公开(公告)日:2020-02-13

    申请号:PCT/US2019/045825

    申请日:2019-08-09

    Abstract: A system and method for extending the path length of an electromagnetic wave signal traveling between apertures is disclosed. One such system may comprise N arrays having M 1 through M N apertures, respectively, wherein N ≥ 2, M 1 ≥ 2, and each of M 2 through M N ≥ 1, a substantial number of the M 1 apertures in a first array is configured to send the electromagnetic wave signal to a substantial number of the M 2 apertures in a second array through the M N apertures in a N-th array, the substantial number of the M 2 apertures in the second array through the MN apertures in the N-th array receiving the electromagnetic wave signal from the substantial number of the M 1 apertures in the first array is configured to redirect the received electromagnetic wave signal back to the substantial number of the M 1 apertures in the first array, and the substantial number of the M 1 apertures in the first array is further configured to send the electromagnetic wave signal to another one of the M 1 apertures in the first array after receiving the redirected electromagnetic wave signal from a Μ Ν -th aperture in the N-th array.

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