IP Library › Granted Patent US 9,799,184
Granted Patent B2
US 9,799,184 · App. 15/451,519 · Granted Oct 24, 2017

Microwave motion sensing technology and its application thereof

Inventor: Chia-Teh Chen (Taipei, TW)
G08B13/1645H05B33/0854
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Quick Facts
Patent No.
US 9,799,184
App. No.
15/451,519
Granted
Oct 24, 2017
Kind
B2
Abstract

A method of detecting an occupancy state of a living space for controlling the on/off performance of a lighting apparatus. The method using a microwave motion sensor to detect a motion intrusion, wherein a microcontroller with program codes analyzes a time duration and a frequency pattern of the echoed microwave signal generated by the motion intrusion in the living space. The method using an occupancy counting APP to record, wherein an updated numerical value represents the number of occupants remaining in the living space for operating the illumination. The echoed microwave signal is judged with the frequency pattern being lower or higher than the frequency pattern of the microwave signal transmitted to adjust the numerical value. When the microwave motion sensor is operated with a frequency level below 20 GHz, a microwave confining device is required to limit a detecting capacity of the microwave motion sensor.

Claims (21)

1. A method of detecting an occupancy state of a living space for controlling an on/off performance of a lighting apparatus comprising:

using a microwave motion sensor including a transmitter for transmitting a microwave signal, a receiver for receiving an echoed microwave signal reflected from a moving object in a detection zone, and a sensing circuitry of the microwave motion sensor for detecting a motion intrusion;

using a microcontroller with program codes to analyze a time duration and a frequency pattern of the echoed microwave signal generated by the motion intrusion in the living space;

wherein if the time duration of the echoed microwave signal is shorter than a preset minimum time length, the echoed microwave signal is considered as a local random motion signal;

wherein if the time duration of the echoed microwave signal is longer than the preset minimum time length and the frequency pattern of the echoed microwave signal is higher than the frequency pattern of the microwave signal transmitted, the echoed microwave signal is judged as an incoming motion signal;

wherein if the time duration of the echoed microwave signal is longer than the preset minimum time length and the frequency pattern of the echoed microwave signal is lower than the frequency pattern of the microwave signal transmitted, the echoed microwave signal is judged as an outgoing motion signal;

using an occupancy counting application program preloaded (APP) to record the incoming motion signal and the outgoing motion signal and to operate an algorithm of arithmetic calculation with respect to a motion activity detected in the living space for establishing or updating a numerical value account;

wherein if the echoed microwave signal is judged as the outgoing motion signal, the numerical value account is deducted by 1;

wherein if the echoed microwave signal is judged as the incoming motion signal, the numerical value account is added by 1;

wherein if the echoed microwave signal is judged as the local random motion signal, the numerical value account remains unchanged;

wherein a balance value or an updated numerical value of the numerical value account represents the number of occupants remaining in the living space;

using the numerical value account following an update by a new motion intrusion detected as a decision making parameter for controlling the on/off performance of the lighting apparatus;

wherein the microcontroller is electrically coupled to a switching element electrically coupled to a lighting load;

wherein whenever the balance value of the numerical value account or the updated numerical value of the numerical value account becomes zero, the microcontroller operates to turn off the illumination of the lighting apparatus; and

wherein whenever the balance value of the numerical value account or the updated numerical value of the numerical value account is greater than zero, the microcontroller turns on or continues to turn on the illumination of the lighting apparatus.

2. The method of detecting an occupancy state of a living space according to claim 1 , wherein the occupancy counting APP further includes an arrangement such that when the new motion intrusion is detected in the living space following a turn off of the lighting apparatus, the numerical value account is immediately adjusted by adding 1 and consequently the lighting apparatus is resumed instantly to a turn on state; and

wherein the arrangement represents a false judgment correction action.

3. The method of detecting an occupancy state of a living space according to claim 1 , wherein when the preset minimum time length is missing or undefined, the microcontroller operates a time delay mode to control a light on duration activated by the microwave motion sensor, at the same time the microcontroller activates a learning algorithm to search a minimum time length of a departure signal;

wherein when the lighting apparatus is turned off upon a maturity of the time delay and no further motion is detected after a long period of time indicating no occupant remaining in the living space, the time length of a last outgoing motion signal is recorded as the preset minimum time length for judging the motion signal being the incoming motion signal, the outgoing motion signal or the local random motion signal.

4. The method of detecting an occupancy state of a living space according to claim 1 , wherein when the microwave motion sensor is operated with a frequency level below 20 GHz, a microwave confining device is required to limit a detecting capacity of the microwave motion sensor within the living space to eliminate a wall penetration effect.

5. The method of detecting an occupancy state of a living space according to claim 1 , wherein when the microwave motion sensor is designed to operate at a frequency level equal to or higher than 20 GHz, a wall penetration effect becomes negligible as the wave characteristics of a microwave becomes more like the wave characteristic of a light, and a microwave confining device is therefore not required.

Continuity (2)
Continuation 14622787 · Feb 13, 2015
Related Publication 20170178473A1 · Jun 22, 2017