IP Library › Granted Patent US 11,245,186
Granted Patent B2
US 11,245,186 · App. 16/233,391 · Granted Feb 8, 2022

Spatial and bandwidth multiplexing device and method

Inventor: Michael Feilen (Hoehenkirchen-Siegertsbrunn, DE)
Assignee: Rohde & Schwarz GmbH & Co. KG
H01Q3/40H01Q1/50H01Q3/247H01Q25/002
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Quick Facts
Patent No.
US 11,245,186
App. No.
16/233,391
Granted
Feb 8, 2022
Kind
B2
Abstract

A device for transmitting and/or receiving electromagnetic signals includes an antenna array, a combiner/splitter unit, a signal processing unit, and a switch. The antenna array includes a plurality of N antenna elements adapted to transmit and/or receive electromagnetic signals. The signal processing unit comprises at least one analog-to-digital converter and/or digital-to-analog converter for each of the antenna elements of the antenna array. The switching unit is adapted to switch between a broadband mode and a spatial resolution mode.

Claims (52)

1. A device for transmitting and/or receiving electromagnetic signals, comprising:

an antenna array, comprising a plurality of N antenna elements adapted to transmit and/or receive electromagnetic signals;

a signal combiner/splitter;

a signal processor comprising at least one analog-to-digital converter and/or digital-to-analog converter for each of the plurality of N antenna elements of the antenna array; and

a switching component adapted to switch between a broadband mode and a spatial resolution mode; and

wherein the switching component comprises a first switch and a second switch,

wherein the first switch is connected to the antenna array by a first plurality of N lines corresponding to the plurality of N antenna elements of the antenna array, to the combiner/splitter by a second plurality of N lines, and to the second switch by a third plurality of N lines,

wherein the first switch is adapted to switch the antenna array between one of the combiner/splitter and the second switch,

wherein the second switch is connected to the combiner/splitter by a fourth plurality of N lines, to the first switch by the third plurality of N lines, and to the signal processor by a fifth plurality of N lines, and

wherein the second switch is adapted to switch the signal processor between one of the combiner/splitter and the first switch.

2. The device according to claim 1 , wherein:

in the broadband mode, the first switch is adapted to connect the antenna array to the signal combiner/splitter, and the second switch is adapted to connect the signal combiner/splitter to the signal processor, and/or

in the spatial resolution mode, the first switch is adapted to connect the antenna array to the second switch, and the second switch is adapted to connect the first switch to the signal processor.

3. The device according to claim 2 , wherein:

the signal combiner/splitter comprises a plurality of N first ports and a plurality of N second ports; and

the signal combiner/splitter is adapted to combine input signals at the plurality of N first ports to a single output signal at the plurality of N second ports, and/or to provide a single input signal present at the plurality of N second ports to the plurality of N first ports.

4. The device according to claim 3 , wherein:

the first switch comprises a plurality of N switches;

the second switch comprises a plurality of N switches;

the signal processor comprises a plurality of N signal paths;

each of the plurality of N switches of the first switch is connected to one of the plurality of N antenna elements of the antenna array, one of the plurality of N first ports of the signal combiner/splitter, and one of the plurality of N switches of the second switch; and

each of the plurality of N switches of the second switch is connected to one of the plurality of N switches of the first switch, one of the plurality of N second ports of the signal combiner/splitter, and one of the plurality of N signal paths of the signal processor.

5. The device according to claim 4 , wherein:

in the broadband mode, the plurality of N switches of the first switch are adapted to connect the plurality of N antenna elements of the antenna array to the plurality of N first ports of the signal combiner/splitter, and the plurality of N switches of the second switch are adapted to connect the plurality of N second ports of the signal combiner/splitter to the plurality of N signal paths of the signal processor; and/or

in the spatial resolution mode, the plurality of N switches of the first switch are adapted to connect the plurality of N antenna elements of the antenna array to the plurality of N switches of the second switch, and the plurality of N switches of the second switch are adapted to connect the plurality of N switches of the first switch to the plurality of N signal paths of the signal processor.

6. The device according to claim 4 , wherein each of the plurality of N signal paths of the signal processor, (i) when the device is receiving an electromagnetic signal in the broadband mode, is adapted to process a reception of a different frequency slice of the received electromagnetic signal, and (ii) when the device is transmitting an electromagnetic signal in the broadband mode, is adapted to generate a different frequency slice of the electromagnetic signal to be transmitted.

7. The device according to claim 4 , wherein each of the plurality of N signal paths of the signal processor (i) when the device is receiving an electromagnetic signal in the spatial resolution mode, is adapted to process a reception of a different antenna element reception signal, and (ii) when the device is transmitting an electromagnetic signal in the spatial resolution mode, is adapted to generate a different antenna element signal to be transmitted.

8. The device according to claim 4 , wherein each signal path of the signal processor comprises one or more of a first mixer, a filter, the analog-to-digital converter and/or the digital-to-analog converter for each of the plurality of N antenna elements of the antenna array, an upsampler and/or a downsampler, and a second mixer.

9. The device according to claim 1 , wherein:

the device is a transceiver adapted to transmit and receive electromagnetic signals;

the plurality of N antenna elements are adapted to transmit and receive electromagnetic signals;

the signal combiner/splitter is adapted to combine input signals at a plurality of N first ports of the signal combiner/splitter to a single output signal at a plurality of N second ports of the signal combiner/splitter, and to provide a single input signal present at the plurality of N second ports to the plurality of N first ports; and

the signal processor is adapted to generate signals to be transmitted by the antenna array and to receive signals received by the antenna array as electromagnetic signals.

10. The device according to claim 1 , wherein:

the device is a receiver adapted to receive electromagnetic signals;

the plurality of N antenna elements are adapted to receive electromagnetic signals;

the signal combiner/splitter is adapted to combine input signals at a plurality of N first ports of the signal combiner/splitter to a single output signal at a plurality of N second ports of the signal combiner/splitter; and

the signal processor is adapted receive signals received by the antenna array as electromagnetic signals.

11. The device according to claim 1 , wherein:

the device is a transmitter adapted to transmit electromagnetic signals;

the plurality of N antenna elements are adapted to transmit electromagnetic signals;

the signal combiner/splitter is adapted to provide a single input signal present at a plurality of N second ports of the signal combiner/splitter to a plurality of N first ports of the signal combiner/splitter; and

the signal processor is adapted to generate signals to be transmitted by the antenna array.

12. The device according to claim 1 , wherein N is at least 2, or at least 3, or at least 4, or at least 5, or at least 6, or at least 7, or at least 8, or at least 9, or at least 10, or at least 16, or at least 32, or at least 64, or at least 128, or at least 256, or at least 512, or at least 1024.

13. A method for transmitting and/or receiving electromagnetic signals using a device adapted to transmit and/or receive the electromagnetic signals, the method comprising:

selecting, by a switching component of the device, one of a broadband mode and a spatial resolution mode;

switching, by a first switch of the switching component, an antenna array of the device between one of a combiner/splitter of the device and a second switch of the switching component; and

switching, by a second switch of the switching component, a signal processor of the device between one of the combiner/splitter and the first switch; and

wherein the antenna array comprises a plurality of N antenna elements adapted to transmit and/or receive the electromagnetic signals,

wherein the signal processor comprises at least one analog-to-digital converter and/or at least one digital-to-analog converter for each of the plurality of N antenna elements,

wherein the first switch is connected to the antenna array by a first plurality of N lines corresponding to the plurality of N antenna elements, to the combiner/splitter by a second plurality of N lines, and to the second switch by a third plurality of N lines, and

wherein the second switch is connected to the combiner/splitter by a fourth plurality of N lines, to the first switch by the third plurality of N lines, and to the signal processor by a fifth plurality of N lines.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 7, 2019
From: FEILEN, MICHAEL, DR.
To: ROHDE & SCHWARZ GMBH & CO. KG
Reel/Frame 048530/0318 →
Priority Claims (1)
EP 18209050 · Nov 29, 2018 · regional
Continuity (1)
Related Publication 20200176868A1 · Jun 4, 2020