IP Library › Granted Patent US 8,237,602
Granted Patent B2
US 8,237,602 · App. 12/179,156 · Granted Aug 7, 2012

Distributed and coordinated electronic warfare system

Assignee: Lockheed Martin Corporation
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Quick Facts
Patent No.
US 8,237,602
App. No.
12/179,156
Granted
Aug 7, 2012
Kind
B2
Abstract

A distributed and coordinated electronic warfare system is disclosed, which comprises a plurality of autonomous, geographically-distributed, mobile units (e.g., soldiers, vehicles, etc.), each of which carries an electronic warfare module. Each electronic warfare module comprises: a telecommunications transceiver for enabling the electronic warfare modules and their users to communicate with each other, and a threat-detection receiver for detecting potentially hostile radio signals, such as those that are used to detonate IEDs; and a jamming transmitter for transmitting sequences of electromagnetic pulses to interfere with potentially hostile radio signals, and an electronic warfare controller for coordinating the efforts of the electronic warfare modules.

Claims (34)

1. A method comprising coordinating the transmission of a first sequence of electromagnetic pulses from a first transmitter at a first location and the transmission of a second sequence of electromagnetic pulses from a second transmitter at a second location to attack a first signal in a first geographic region in a first frequency band;

wherein the first location and the second location are geographically diverse;

wherein the first sequence of electromagnetic pulses is temporally interleaved with the second sequence of electromagnetic pulses;

wherein the coordinating operation is between a first electronics module that comprises the first transmitter and a second electronics module that comprises the second transmitter; and

wherein the electronics modules are autonomous as to each other.

2. The method of claim 1 further comprising coordinating the transmission of a third sequence of electromagnetic pulses from the first transmitter and a fourth sequence of electromagnetic pulses from a third transmitter at a third location to attack a second signal in a second geographic region in a second frequency band;

wherein the first location and the third location are geographically diverse;

wherein the third sequence of electromagnetic pulses is temporally interleaved with the fourth sequence of electromagnetic pulses;

wherein the coordinating operations are among the first electronics module and the second electronics module and a third electronics module that comprises the third transmitter.

3. The method of claim 2 wherein the third sequence of electromagnetic pulses is temporally interleaved with the first sequence of electromagnetic pulses.

4. The method of claim 1 further comprising coordinating the first sequence of electromagnetic pulses and the second sequence of electromagnetic pulses with a threat-detection receiver to ensure that the first sequence of electromagnetic pulses and the second sequence of electromagnetic pulses do not interfere with the threat-detection receiver.

5. The method of claim 1 further comprising coordinating the first sequence of electromagnetic pulses and the second sequence of electromagnetic pulses with a telecommunications transceiver to ensure that the first sequence of electromagnetic pulses and the second sequence of electromagnetic pulses do not interfere with the telecommunications transceiver.

6. A method comprising coordinating, by a first electronics module comprising a first transmitter, the transmission of a first sequence of electromagnetic pulses from the first transmitter at a first location with the operation of a telecommunications transceiver to ensure that the first sequence of electromagnetic pulses do not interfere with the telecommunications transceiver;

wherein the coordinating is between the first electronics module and a second electronics module that (i) comprises the telecommunications transceiver and (ii) communicates with the first electronics module via the telecommunications transceiver; and

wherein the electronics modules are (i) autonomous as to each other, and (ii) equally knowledgeable of parameters of detected signals.

7. The method of claim 6 further comprising coordinating the transmission of the first sequence of electromagnetic pulses from the first transmitter with a threat-detection receiver to ensure that the first sequence of electromagnetic pulses do not interfere with the threat-detection receiver.

8. The method of claim 6 further comprising coordinating the transmission of a second sequence of electromagnetic pulses from a second transmitter at a second location to ensure that the second sequence of electromagnetic pulses do not interfere with the telecommunications transceiver;

wherein the first location is geographically diverse from the second location, and

wherein the second electronics module comprises the second transmitter.

9. A method comprising coordinating, by a first electronics module comprising a threat-detection receiver, the operation of a telecommunications transceiver with the operation of the threat-detection receiver to ensure that the telecommunications transceiver does not interfere with the threat-detection receiver;

wherein the coordinating is between the first electronics module and a second electronics module that (i) comprises the telecommunications transceiver and (ii) communicates with the first electronics module via the telecommunications transceiver; and

wherein the electronics modules are (i) autonomous as to each other, and (ii) equally knowledgeable of parameters of signals detected by the threat-detection receiver.

10. A method comprising:

transmitting, from a first transmitter at a first location, a first sequence of electromagnetic pulses into a first frequency band in a first region;

transmitting, from the first transmitter at the first location, a second sequence of electromagnetic pulses into a second frequency band in the first region, wherein the first sequence of electromagnetic pulses and the second sequence of electromagnetic pulses are temporally interleaved;

transmitting, from a second transmitter at a second location, a third sequence of electromagnetic pulses into a third frequency band in a second region; and

transmitting, from the second transmitter at the second location, a fourth sequence of electromagnetic pulses into the second frequency band in the second region, wherein the third sequence of electromagnetic pulses and the fourth sequence of electromagnetic pulses are temporally interleaved;

wherein the first region and the second region partially overlap.

11. The method of claim 10 wherein the first frequency band, the second frequency band, and the third frequency band are distinct.

12. The method of claim 10 wherein the first sequence of electromagnetic pulses, the second sequence of electromagnetic pulses, and the third sequence of electromagnetic pulses are non-information bearing.

13. The method of claim 10 further comprising:

coordinating the transmission of a first information-bearing signal with the transmission of the first sequence of electromagnetic pulses, the second sequence of electromagnetic pulses, and the third sequence of electromagnetic pulses.

14. The method of claim 10 further comprising:

coordinating the reception of a first information-bearing signal with the transmission of the first sequence of electromagnetic pulses, the second sequence of electromagnetic pulses, and the third sequence of electromagnetic pulses.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 15, 2008
From: HUNEYCUTT, DOUGLAS S., SR.
To: LOCKHEED MARTIN CORPORATION
Reel/Frame 021530/0269 →
Continuity (2)
Provisional Application 60951584 · Jul 24, 2007
Related Publication 20120169522A1 · Jul 5, 2012