IP Library Patent Application 18883005
Patent Application
App. No. 18/883,005

RADAR SYSTEM AND METHOD FOR RADAR SYSTEM

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Patent No.
US None
App. No.
18/883,005
Abstract

A radar system and a method for a radar system configured with a gating mechanism is disclosed. The method includes determining, by a computing device, one or more first pulse attributes related to a first set of reflected electromagnetic pulses during a first period of time. The method further includes operating, by the computing device, a modulator to append a modulated signal to a set of emitted electromagnetic pulses. The method further includes determining, by the computing device, one or more second pulse attributes related to a second set of reflected electromagnetic pulses during a second period of time. The method further includes determining, by the computing device, based on the one or more first and second pulse attributes, a change of position of the object within the FOV of the radar system during a period between the first period of time and the second period of time.

Claims (36)

1 . A radar system configured with a range gating mechanism, comprising:

a transmitter configured to emit a set of electromagnetic pulses in a region defining a field of view (FOV) of the radar system;

a receiver configured to detect a set of reflected electromagnetic pulses originating responsive to reflection of the set of emitted electromagnetic pulses from an object located within the FOV of the radar system;

a modulator communicably coupled to the transmitter and configured to selectively append a modulated signal to the set of emitted electromagnetic pulses; and

a computing device communicably coupled to the transmitter, the receiver, and the modulator, the computing device configured to:

determine one or more first pulse attributes related to a first set of reflected electromagnetic pulses during a first period of time;

operate the modulator to append a modulated signal to the set of emitted electromagnetic pulses;

determine one or more second pulse attributes related to a second set of reflected electromagnetic pulses during a second period of time; and

determine, based on the one or more first and second pulse attributes, a change of position of the object within the FOV of the radar system during a period between the first period of time and the second period of time.

2 . The radar system of claim 1 , wherein the computing device is configured to intermittently operate the modulator to append the modulated signal to the set of emitted electromagnetic pulses.

3 . The radar system of claim 1 , wherein the computing device is configured to operate the modulator to continuously append the modulated signal to the set of emitted electromagnetic pulses.

4 . The radar system of claim 1 , wherein the one or more pulse attributes comprise one or more of an amplitude of the set of reflected electromagnetic pulses, and a phase difference between the corresponding set of emitted electromagnetic pulses and the set of reflected electromagnetic pulses.

5 . The radar system of claim 1 , wherein the computing device is further configured to:

determine, a first amplitude of the first set of reflected electromagnetic pulses; and

determine a second amplitude of the second set of reflected electromagnetic pulses; and

determine the change in position of the object based on the first and second amplitudes.

6 . The radar system of claim 1 , wherein the modulated signal is a frequency modulated signal.

7 . The radar system of claim 1 , wherein the first and second sets of reflected electromagnetic pulses are transformed in frequency domain using any one or a combination of filtering, convolution, and autocorrelation.

8 . The radar system of claim 1 , wherein the computing device is configured to operate the modulator to append the modulated signal to the set of emitted electromagnetic pulses during any one period of time, such that the modulated signal during the any one period of time comprises at least first and second frequencies different from each other.

9 . The radar system of claim 1 , wherein the first and second sets of reflected electromagnetic pulses are filtered in the frequency domain, and wherein a frequency difference of the modulated signal is in a passband.

10 . A method for a radar system configured with a range gating mechanism, comprising:

determining, by a computing device, one or more first pulse attributes related to a first set of reflected electromagnetic pulses during a first period of time;

operating, by the computing device, a modulator to append a modulated signal to a set of emitted electromagnetic pulses;

determining, by the computing device, one or more second pulse attributes related to a second set of reflected electromagnetic pulses during a second period of time; and

determining, by the computing device, based on the one or more first and second pulse attributes, a change of position of the object within the FOV of the radar system during a period between the first period of time and the second period of time.

11 . The method of claim 10 , further comprising operating intermittently, by the computing device, the modulator to append the modulated signal to the set of emitted electromagnetic pulses.

12 . The method of claim 10 , further comprising operating, by the computing device, the modulator to continuously append the modulated signal to the set of emitted electromagnetic pulses.

13 . The method of claim 10 , wherein the one or more pulse attributes comprise one or more of an amplitude of the set of reflected electromagnetic pulses, and a phase difference between the corresponding set of emitted electromagnetic pulses and the set of reflected electromagnetic pulses.

14 . The method of claim 10 , further comprising:

determining, by the computing device, a first amplitude of the first set of reflected electromagnetic pulses; and

determining, by the computing device, a second amplitude of the second set of reflected electromagnetic pulses; and

determining, by the computing device, the change in position of the object based on the first and second amplitudes.

15 . The method of claim 10 , wherein the modulated signal is a frequency modulated signal.

16 . The method of claim 10 , wherein the first and second sets of reflected electromagnetic pulses are transformed in frequency domain using any one or a combination of filtering, convolution, and autocorrelation.

17 . The method of claim 10 , further comprising operating, by the computing device, the modulator to append the modulated signal to the set of emitted electromagnetic pulses during any one period of time, such that the modulated signal during the any one period of time comprises at least first and second frequencies different from each other.

18 . The method of claim 10 , wherein the first and second sets of reflected electromagnetic pulses are filtered in the frequency domain, and wherein a frequency difference of the modulated signal is in a passband.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 9, 2026
From: CARRIER GLOBAL CORPORATION; CARRIER CORPORATION; CARRIER FIRE & SECURITY EMEA; CARRIER FIRE & SECURITY, LLC; CARRIER CANADA CORPORATION; CLIMATES, CONTROLS & SECURITY ARGENTINA S.A.; KIDDE IP HOLDINGS, INC.; KIDDE LTD.; KIDDE PRODUCTS LTD.; CARRIER TRANSICOLD AUSTRIA GMBH; CARRIER TRANSICOLD FRANCE SCS
To: KIDDE FIRE PROTECTION, LLC
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