IP Library Granted Patent US 7,656,963
Granted Patent B2
US 7,656,963 · App. 11/669,027 · Granted Feb 2, 2010

Data transfer using frequency notching of radio-frequency signals

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Quick Facts
Patent No.
US 7,656,963
App. No.
11/669,027
Granted
Feb 2, 2010
Kind
B2
Abstract

A method for data transmission includes forming a notched radio-frequency (RF) burst according to one or more data values, where a bandwidth of the notched RF burst is at least two percent of the center frequency of the notched RF burst. Forming a notched RF pulse includes altering, according to the data, at least one of the amplitude and phase of one or more selected components, where each of the selected components has a bandwidth within the bandwidth of the notched RF burst.

Claims (37)

1. A transmitter comprising:

means for generating a RF burst; and

means for altering, according to at least one data value, at least one of the amplitude and phase of at least one component of the RF burst to produce a notched RF burst,

wherein a bandwidth of the notched RF burst is at least two percent of the center frequency of the notched RF burst.

2. The transmitter according to claim 1 , wherein said means for altering includes means for altering, according to one of the at least one data values, the phase of at least one component of the RF burst.

3. The transmitter according to claim 1 , wherein said means for altering includes means for altering, according to one of the at least one data values, the amplitude of at least one component of the RF burst.

4. A transmitter comprising:

means for generating a plurality of frequency components; and

means for combining a selected plurality of the plurality of frequency components according to at least one data value to produce a notched RF burst,

wherein a bandwidth of the notched RF burst is at least two percent of the center frequency of the notched RF burst.

5. The transmitter according to claim 4 , wherein at least one of the selected plurality of the plurality of frequency components is a time-limited sinusoid.

6. The transmitter according to claim 4 , wherein said means for combining includes means for altering, according to one of the at least one data values, the phase of each of a plurality of selected components.

7. The transmitter according to claim 4 , wherein said means for combining includes means for altering, according to one of the at least one data values, the amplitude of each of a plurality of selected components.

8. A data storage medium having machine-readable code stored thereon, the machine-readable code comprising instructions executable by an array of logic elements, the instructions defining a method of data transmission, said method comprising:

receiving at least one data value to be transferred;

generating a RF burst; and

altering, according to the at least one data value, at least one of the amplitude and phase of at least one component of the RF burst to produce a notched RF burst,

wherein a bandwidth of the notched RF burst is at least two percent of the center frequency of the notched RF burst.

9. A data storage medium having machine-readable code stored thereon, the machine-readable code comprising instructions executable by an array of logic elements, the instructions defining a method of data transmission, said method comprising:

generating a plurality of frequency components; and

combining a selected plurality of the frequency components according to at least one data value to produce a notched RF burst,

wherein a bandwidth of the notched RF burst is at least two percent of the center frequency of the notched RF burst.

10. A transmitter comprising:

a signal generator configured to generate an RF burst; and

a burst shaper configured to alter, according to at least one data value, at least one of the amplitude and phase of at least one selected component of the RF burst to form a notched radio-frequency (RF) burst,

wherein a bandwidth of the notched RF burst is at least two percent of the center frequency of the notched RF burst, and

wherein each of the at least one selected components has a bandwidth within the bandwidth of the notched RF burst.

11. The transmitter according to claim 10 , said transmitter further comprising a sensor configured to sense an environmental condition and to output the at least one data value according to the sensed environmental condition.

12. A system including:

a plurality of transmitters, each of the plurality of transmitters comprising:

a sensor configured to sense an environmental condition and to output a set of at least one data value according to the sensed environmental condition;

a signal generator configured to generate an RF burst; and

a burst shaper configured to alter, according to the set of at least one data value, at least one of the amplitude and phase of at least one selected component of the RF burst to form a notched radio-frequency (RF) burst; and

a receiver configured to receive the notched RF bursts from each transmitter, to decode the corresponding sets of data values, and to associate each among the sets with a location of the corresponding transmitter,

wherein a bandwidth of each notched RF burst is at least two percent of the center frequency of the notched RF burst, and

wherein each of the at least one selected components has a bandwidth within the bandwidth of the corresponding notched RF burst.

13. The system according to claim 12 , wherein at least one among said plurality of transmitters is further configured to transmit a second plurality of bursts indicating at least one parameter selected from a group consisting of: a location and a position of said transmitter.

Assignments (2)
SECURITY INTEREST Recorded Apr 10, 2020
From: GENERAL ATOMICS
To: BANK OF THE WEST
Reel/Frame 052372/0067 →
PATENT SECURITY AGREEMENT Recorded Jun 20, 2017
From: GENERAL ATOMICS
To: BANK OF THE WEST
Reel/Frame 042914/0365 →