Fully-passive and fast-programmable smart surface
A reflective device includes a control element, and a reflective surface with a plurality of reflective elements. Each reflective element of the plurality of reflective elements includes an antenna element and a phase shifting arrangement and is under control of the control element so as to reflect a radio-frequency (RF) signal incident on the reflective surface with an adjustable phase shift. The plurality of reflective elements are connected to the control element via a cell selection bus system that interconnects the plurality of reflective elements.
1 . A reflective device, comprising:
a control element; and
a reflective surface comprising a plurality of reflective elements, wherein each reflective element of the plurality of reflective elements comprises an antenna element and a phase shifting arrangement and is under control of the control element so as to reflect a radio-frequency (RF) signal incident on the reflective surface with an adjustable phase shift, wherein the plurality of reflective elements are connected to the control element via a cell selection bus system that interconnects the plurality of reflective elements, wherein each reflective element of the plurality of reflective elements comprises an AND gate, and wherein each AND gate is connected to exactly one row bus and exactly one column bus of the cell selection bus system.
2 . The device according to claim 1 , wherein the plurality of reflective elements are arranged in a two-dimensional array, and
wherein the cell selection bus system comprises row buses interconnecting a first subset of the plurality of reflective elements that are located on a same row of the array and column buses interconnecting a second subset of the plurality of reflective elements that are located on a same column of the array.
3 . The device according to claim 1 , further comprising one or more phase configuration buses that are configured to communicate from the control element to a respective one of the reflective elements a desired setting of a corresponding phase shifting arrangement of the respective reflective element.
4 . The device according to claim 3 , wherein the phase shifting arrangement comprises a number of different open-ended transmission lines with specific lengths and a switching element that connects an input signal received via the antenna element of the reflective element to a specific one of the open-ended transmission lines.
5 . The device according to claim 4 , wherein the switching element includes an RF switch that is configured to select a specific one of the open-ended transmission lines based on an input control signal derived from the one or more phase configuration buses.
6 . The device according to claim 5 , wherein an output of the RF switch is connected to an electronic element that matches a characteristic impedance of the specific one of the open-ended transmission line such that, when selected, a corresponding reflective element is in an absorption state in which an input signal received via the antenna element of the corresponding reflective element is dissipated.
7 . The device according to claim 5 , further comprising one or more flip-flops connected to the one or more phase configuration buses, wherein the one or more flip-flops are configured, when triggered, to read current values from the one or more phase configuration buses and to transmit the values to the RF switch of the phase shifting arrangement.
8 . The device according claim 7 , wherein the one or more flip-flops of a reflective element of the plurality of reflective elements are configured to use a rising edge of a high state exiting the AND gate of the reflective element as a trigger.
9 . The device according to claim 6 , wherein the control element is configured to dynamically adapt a number and a shape of active reflective elements by transmitting, via the phase configuration buses, control signals that effect a transition into the absorption state for respective ones of the reflective element.
10 . The device according to claim 1 , further comprising a serial port adapted to enable communication with external devices via a serial bus.
11 . A method of operating a reflective device according to claim 1 , the method comprising:
jointly controlling the plurality of reflective elements via the cell selection bus system that interconnects the plurality of reflective elements.
12 . The method according to claim 11 , further comprising:
deriving, from one or more phase configuration buses, an input control signal for a switching element of the phase shifting arrangement;
using, by the switching element, the input control signal to select, for an input signal received via the antenna element of a respective reflective element, a specific one of a number of transmission lines; and
connecting the input signal to the selected transmission line.
13 . The method according to claim 12 , wherein deriving the input control signal from the one or more phase configuration buses comprises:
triggering, by a rising edge of a high state exiting the AND gate of a reflective element of the plurality of reflective elements, one or more flip-flops connected to the one or more phase configuration buses;
deriving, by the one or more flip-flops when triggered, the current values from the one or more phase configuration buses and transmitting the derived values to an RF switch of the phase shifting arrangement.
14 . The method according to claim 11 , further comprising:
dynamically adapting a number and a shape of active reflective elements by transmitting, via the phase configuration buses, control signals that effect a transition into an absorption state for respective ones of the reflective element.
15 . A reflective device, comprising:
a control element; and
a reflective surface comprising a plurality of reflective elements, wherein each reflective element of the plurality of reflective elements comprises an antenna element and a phase shifting arrangement and is under control of the control element so as to reflect a radio-frequency (RF) signal incident on the reflective surface with an adjustable phase shift, and wherein the plurality of reflective elements are connected to the control element via a cell selection bus system that interconnects the plurality of reflective elements; and
one or more phase configuration buses that are configured to communicate from the control element to a respective one of the reflective elements a desired setting of a corresponding phase shifting arrangement of the respective reflective element, wherein the phase shifting arrangement comprises a number of different open-ended transmission lines with specific lengths and a switching element that connects an input signal received via the antenna element of the reflective element to a specific one of the open-ended transmission lines.
16 . The reflective device according to claim 15 , wherein the switching element includes an RF switch that is configured to select a specific one of the open-ended transmission lines based on an input control signal derived from the one or more phase configuration buses.
17 . The reflective device according to claim 16 , wherein an output of the RF switch is connected to an electronic element that matches a characteristic impedance of the specific one of the open-ended transmission line such that, when selected, a corresponding reflective element is in an absorption state in which an input signal received via the antenna element of the corresponding reflective element is dissipated.
18 . The reflective device according to claim 16 , further comprising one or more flip-flops connected to the one or more phase configuration buses, wherein the one or more flip-flops are configured, when triggered, to read current values from the one or more phase configuration buses and to transmit the values to the RF switch of the phase shifting arrangement.
19 . The reflective device according to claim 18 , wherein the one or more flip-flops of a reflective element of the plurality of reflective elements are configured to use a rising edge of a high state exiting an AND gate of the reflective element as a trigger.
20 . The reflective device according to claim 17 , wherein the control element is configured to dynamically adapt a number and a shape of active reflective elements by transmitting, via the phase configuration buses, control signals that effect a transition into the absorption state for respective ones of the reflective element.