IP Library Granted Patent US 11,656,321
Granted Patent B2
US 11,656,321 · App. 16/453,984 · Granted May 23, 2023

Method of microwave motion detection with adaptive frequency control and related devices

Inventor: Tse-Peng Chen (Taipei, TW)
Assignee: RichWave Technology Corp.
G01S7/023G01S7/0232G01S13/56
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,656,321
App. No.
16/453,984
Granted
May 23, 2023
Kind
B2
Abstract

A method of microwave motion detection with adaptive frequency control, for a microwave motion sensor, comprises suppressing output of the first detecting signal generated with a first frequency, determining whether a first interference signal is detected in the first frequency during the suppressing, responsive to that the first interference signal is detected in the first frequency, generating a second detecting signal with a second frequency, which is different from the first frequency, and suppressing output of the second detecting signal, determining whether a second interference signal is detected in the second frequency during the suppressing, and responsive to that the second interference signal is not detected in the second frequency, outputting the second detecting signal for motion detection. The microwave motion sensor is operated in a normal mode or in a detection mode according to the first detecting signal, a reflected signal, the second detecting signal and an interference signal.

Claims (41)

1. A method of microwave motion detection with adaptive frequency control, for a microwave motion sensor, the method comprising:

suppressing output of a first detecting signal for motion detection, wherein the first detecting signal is generated with a first frequency;

determining a first interference signal is detected in the first frequency during the suppressing output of the first detecting signal;

responsive to that the first interference signal is detected in the first frequency during the suppressing output of the first detecting signal, generating a second detecting signal with a second frequency, which is different from the first frequency, and suppressing output of the second detecting signal;

determining whether a second interference signal is detected in the second frequency during the suppressing output of the second detecting signal; and

responsive to that the second interference signal is not detected in the second frequency, outputting the second detecting signal for motion detection;

determining a first signal as the first interference signal is received by the microwave motion sensor during the suppressing output of the first detecting signal;

wherein determining the first signal as the first interference signal is received by the microwave motion sensor during the suppressing output of the first detecting signal comprises:

performing a low pass filtering operation to a first mixing signal;

responsive to that a first mixing frequency of the first mixing signal is lower than a first cutoff frequency, determining the first signal is received by the microwave motion sensor, wherein the first mixing signal is generated according to the first detecting signal and the received first signal; and

wherein determining whether the second interference signal is detected in the second frequency during the suppressing of the second detecting signal comprises:

determining whether a second signal as the second interference signal is received by the microwave motion sensor during the suppressing output of the second detecting signal;

performing the low pass filtering operation to a second mixing signal, wherein the second mixing signal is generated according to the second detecting signal and the received second signal;

responsive to that a second mixing frequency of the second mixing signal is lower than a second cutoff frequency, determining the second signal is received by the microwave motion sensor; and

responsive to that the second mixing frequency of the second mixing signal is higher than the second cutoff frequency, determining the second signal is not received by the microwave motion sensor.

2. The method of claim 1 ,

wherein determining the first signal as the first interference signal is received by the microwave motion sensor during the suppressing output of the first detecting signal comprises:

responsive to that the first signal is received by the microwave motion sensor during the suppressing output of the first detecting signal and the strength of the first mixing signal is greater than the first threshold, determining the first interference signal is detected.

3. The method of claim 1 , wherein suppressing output of the first detecting signal for motion detection comprises:

periodically stopping outputting the first detecting signal for motion detection; or

reducing an output power of the first detecting signal.

4. The method of claim 1 , wherein responsive to that the first interference signal is detected in the first frequency during the suppressing output of the first detecting signal, generating the second detecting signal with the second frequency, which is different from the first frequency comprises:

generating the second detecting signal with the second frequency by decreasing or increasing the first frequency of the first detecting signal with a first frequency step, or with a first set of frequency steps;

wherein the method further comprises:

responsive to that the second interference signal is detected in the second frequency during the suppressing output of the second detecting signal, generating a third detecting signal with a third frequency, which is different from the first and second frequencies; and

generating the third detecting signal with the third frequency by decreasing or increasing the second frequency of the second detecting signal with a second frequency step or with a second set of frequency steps.

5. The method of claim 4 , wherein generating the second detecting signal with the second frequency by decreasing or increasing the first frequency of the first detecting signal with the first frequency step, or with the first set of frequency steps, and generating the third detecting signal with the third frequency by decreasing or increasing the second frequency of the second detecting signal with the second frequency step or with the second set of frequency steps comprises:

generating the second detecting signal by decreasing the first frequency of the first detecting signal with a first frequency step, and generating the third detecting by increasing the second frequency of the second detecting signal with a second frequency step; or

generating the second detecting signal by increasing the first frequency of the first detecting signal with the first frequency step, and generating the third detecting by decreasing the second frequency of the second detecting signal with the second frequency step.

6. The method of claim 1 , further comprising:

responsive to that the second interference signal is detected in the second frequency during the suppressing output of the second detecting signal, generating a third detecting signal with a third frequency, which is different from the first and second frequencies.

7. The method of claim 1 , wherein determining whether the second interference signal is detected in the second frequency during the suppressing of the second detecting signal comprises:

determining whether a second signal as the second interference signal is received by the microwave motion sensor during the suppressing of the second detecting signal; and

responsive to that the second signal is not received by the microwave motion sensor during the suppressing of the second detecting signal, determining the second interference signal is not detected; or

responsive to that the second signal is received by the microwave motion sensor during the suppressing of the second detecting signal but a strength of a second mixing signal, which is generated according to the second detecting signal and the received second signal, is smaller than a second threshold, determining the second interference signal is not detected; or

responsive to that the second signal is received by the microwave motion sensor during the suppressing of the second detecting signal and the strength of the second mixing signal is greater than the second threshold, determining the second interference signal is detected.

8. The method of claim 1 , wherein responsive to that the first interference signal is detected in the first frequency during the suppressing output of the first detecting signal, generating the second detecting signal with the second frequency, which is different from the first frequency comprises:

determining whether a radio channel occupied by an interferer is at a high frequency side or a low frequency side, wherein the first interference signal is caused by the interferer, and the first frequency of the first interference signal is within the radio channel;

responsive to that the radio channel occupied by the interferer is at a high frequency side, generating the second detecting signal with the second frequency by decreasing the first frequency of the first detecting signal with a first frequency step, or with a first set of frequency steps; and

responsive to that the radio channel occupied by the interferer is at a low frequency side, generating the second detecting signal with the second frequency by increasing the first frequency of the first detecting signal with a second frequency step, or with a second set of frequency steps.

9. The method of claim 8 , wherein the interferer is a WI-FI device or another microwave motion sensor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 26, 2019
From: CHEN, TSE-PENG
To: RICHWAVE TECHNOLOGY CORP.
Reel/Frame 049601/0607 →
Continuity (2)
Provisional Application 62701850 · Jul 23, 2018
Related Publication 20200025867A1 · Jan 23, 2020
Cited By (1)
US 12,436,229