IP Library Granted Patent US 10,243,541
Granted Patent B2
US 10,243,541 · App. 15/806,341 · Granted Mar 26, 2019

Passive automatic antenna tuning based on received-signal analysis

Inventors: Dima Feldman (Ramat Hasharon, IL); Yigal Bitran (Ramat Hasharon, IL); Ariel Yagil (Ein Sarid, IL)
Assignee: ALTAIR SEMICONDUCTOR LTD.
H03J7/02H03F1/3241H04B1/0458H04B2001/0425H04W52/0229H04W76/28Y02D70/00Y02D70/1242Y02D70/1262Y02D70/1264Y02D70/142Y02D70/144Y02D70/164Y02D70/24Y02D70/26Y02D70/40
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Quick Facts
Patent No.
US 10,243,541
App. No.
15/806,341
Granted
Mar 26, 2019
Kind
B2
Abstract

A method includes receiving a signal from a remote transmitter via an electrically-tunable antenna having a tunable element. An adjustment, to be applied to a response of the electrically-tunable antenna, is calculating by analyzing the received signal. The response of the electrically-tunable antenna is adapted by controlling the tunable element responsively to the estimated adjustment.

Claims (34)

1. A method, comprising:

receiving from a remote transmitter a signal that occupies an actual frequency slice selected from among multiple frequency slices within a reception band, via an electrically-tunable antenna having a tunable instantaneous bandwidth that is narrower than the reception band;

calculating, by analyzing the received signal, an adjustment that tunes a frequency-response of the electrically-tunable antenna to the actual frequency slice selected within the reception band from among the multiple frequency slices; and

tuning the frequency-response of the electrically-tunable antenna to the actual frequency slice, responsively to the calculated adjustment, by tuning a tunable element in the electrically-tunable antenna.

2. The method according to claim 1 , wherein calculating the adjustment and tuning the frequency-response comprise carrying out an iterative tuning process that aims to maximize a level of the received signal.

3. The method according to claim 1 , wherein the received signal comprises known signal components, and wherein calculating the adjustment comprises deriving the adjustment from measured received levels of the known signal components.

4. The method according to claim 1 , wherein calculating the adjustment comprises estimating a slope of the frequency-response as a function of frequency over a frequency range, and deriving the adjustment from the estimated slope.

5. The method according to claim 1 , wherein calculating the adjustment comprises estimating a change in a slope of the frequency-response as a function of frequency between at least first and second settings of the tunable element, and deriving the adjustment from the estimated change in the slope.

6. The method according to claim 1 , wherein calculating the adjustment comprises measuring respective levels of the received signal for at least first and second settings of the tunable element, and deriving the adjustment by comparing the received levels.

7. The method according to claim 1 , wherein receiving the signal comprises operating a receiver that receives the signal in an intermittent reception mode, and comprising waking-up the receiver in order to calculate the adjustment in response to meeting a predefined wake-up criterion.

8. The method according to claim 1 , and comprising calculating, based on the tuned frequency-response, an antenna tuning setting to be used for signal transmission.

9. Apparatus, comprising:

an electrically-tunable antenna comprising a tunable element and having a tunable instantaneous bandwidth that is narrower than a reception band;

a receiver configured to receive, from a remote transmitter via the electrically-tunable antenna, a signal that occupies an actual frequency slice selected from among multiple frequency slices within the reception band; and

control circuitry, which is configured to:

calculate, by analyzing the received signal, an adjustment that tunes a frequency-response of the electrically-tunable antenna to the actual frequency slice selected within the reception band from among the multiple frequency slices; and

tune the frequency-response of the electrically-tunable antenna to the actual frequency slice, responsively to the calculated adjustment, by tuning the tunable element in the electrically-tunable antenna.

10. The apparatus according to claim 9 , wherein the control circuitry is configured to calculate the adjustment and tune the frequency-response in an iterative tuning process that aims to maximize a level of the received signal.

11. The apparatus according to claim 9 , wherein the received signal comprises known signal components, and wherein the control circuitry is configured to derive the adjustment from measured received levels of the known signal components.

12. The apparatus according to claim 9 , wherein the control circuitry is configured to estimate a slope of the frequency-response as a function of frequency over a frequency range, and to derive the adjustment from the estimated slope.

13. The apparatus according to claim 9 , wherein the control circuitry is configured to estimate a change in a slope of the frequency-response as a function of frequency between at least first and second settings of the tunable element, and to derive the adjustment from the estimated change in the slope.

14. The apparatus according to claim 9 , wherein the control circuitry is configured to measure respective levels of the received signal for at least first and second settings of the tunable element, and to derive the adjustment by comparing the received levels.

15. The apparatus according to claim 9 , wherein, when the receiver operates in an intermittent reception mode, the control circuitry is configured to wake-up the receiver in order to calculate the adjustment in response to meeting a predefined wake-up criterion.

16. The apparatus according to claim 9 , wherein the control circuitry is configured to calculate, based on the tuned frequency-response, an antenna tuning setting to be used for signal transmission.

17. A method, comprising:

receiving a signal from a first base station on a first frequency in a reception band, via an electrically-tunable antenna having a tunable instantaneous bandwidth that is narrower than the reception band;

calculating, by analyzing the received signal, an adjustment that tunes a frequency-response of the electrically-tunable antenna to an actual frequency slice that is selected from among multiple frequency slices within the reception band for use by a second base station, wherein calculating the adjustment comprises predicting a setting of a tunable element in the electrically-tunable antenna to be used when receiving a subsequent signal from the second base station in the actual frequency slice; and

tuning the frequency-response of the electrically-tunable antenna to the actual frequency slice, responsively to the calculated adjustment, by tuning the tunable element in the electrically-tunable antenna.

18. Apparatus, comprising:

an electrically-tunable antenna comprising a tunable element and having a tunable instantaneous bandwidth that is narrower than a reception band;

a receiver configured to receive a signal from a first base station on a first frequency in the reception band, via the electrically-tunable antenna; and

control circuitry, which is configured to:

calculate, by analyzing the received signal, an adjustment that tunes a frequency-response of the electrically-tunable antenna to an actual frequency slice that is selected from among multiple frequency slices within the reception band for use by a second base station, wherein calculating the adjustment comprises predicting a setting of the tunable element in the electrically-tunable antenna to be used when receiving a subsequent signal from the second base station in the actual frequency slice; and

tune the frequency-response of the electrically-tunable antenna to the actual frequency slice, responsively to the calculated adjustment, by tuning the tunable element in the electrically-tunable antenna.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 19, 2026
From: SONY SEMICONDUCTOR SOLUTIONS CORPORATION
To: ALTAIR SEMICONDUCTOR LTD
Reel/Frame 075350/0600 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 5, 2023
From: SONY SEMICONDUCTOR ISRAEL LTD.
To: SONY SEMICONDUCTOR SOLUTIONS CORPORATION
Reel/Frame 063225/0200 →
CHANGE OF NAME Recorded Apr 12, 2021
From: ALTAIR SEMICONDUCTOR LTD.
To: SONY SEMICONDUCTOR ISRAEL LTD.
Reel/Frame 055984/0171 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 8, 2017
From: FELDMAN, DIMA; BITRAN, YIGAL; YAGIL, ARIEL
To: ALTAIR SEMICONDUCTOR LTD.
Reel/Frame 044520/0751 →
Continuity (6)
Continuation 14873222 · Oct 2, 2015
Continuation In Part 14708255 · May 10, 2015
Continuation PCTIB2015053341 · May 7, 2015
Provisional Application 62060600 · Oct 7, 2014
Provisional Application 61991628 · May 12, 2014
Related Publication 20180062624A1 · Mar 1, 2018