IP Library › Granted Patent US 9,375,153
Granted Patent B2
US 9,375,153 · App. 14/151,930 · Granted Jun 28, 2016

Motion/vibration sensor

Inventors: Tzyy-Sheng Horng (Kaohsiung, TW); Fu-Kang Wang (Kaohsiung, TW); Kang-Chun Peng (Kaohsiung, TW)
Assignees: INDUSTRIAL TECHNOLOGY RESEARCH INSTITUTE; NATIONAL SUN YAT-SEN UNIVERSITY
A61B5/0205A61B5/0507A61B5/1135G01S13/583G01S13/88G08B13/2491
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Quick Facts
Patent No.
US 9,375,153
App. No.
14/151,930
Granted
Jun 28, 2016
Kind
B2
Abstract

A motion/vibration sensor includes a transmit/receive antenna unit, an oscillation unit and a frequency-mixing unit. The transmit/receive antenna unit receives an output signal from the oscillation unit and transmits a detection signal toward at least one object. The detection signal is reflected by the object as a reflected detection signal and received by the transmit/receive antenna unit. The oscillation unit receives the reflected detection signal from the transmit/receive antenna unit for self-injection locking; and the frequency-mixing unit receives the reflected detection signal from the transmit/receive antenna unit for frequency demodulation. The frequency-mixing unit mixes and demodulates the reflected detection signal from the transmit/receive antenna unit with the output signal from the oscillation unit into a baseband output signal which represents a motion/vibration information.

Claims (71)

1. A motion/vibration sensor, including:

a transmit/receive antenna unit;

an oscillation unit, coupled to the transmit/receive antenna unit; and

a frequency-mixing unit coupled to the transmit/receive antenna unit and the oscillation unit;

wherein the transmit/receive antenna unit receives an output signal from the oscillation unit and transmits a detection signal toward at least one object according to the output signal;

the detection signal is reflected by the object as a reflected detection signal and received by the transmit/receive antenna unit;

the oscillation unit receives the reflected detection signal from the transmit/receive antenna unit for self-injection locking and the frequency-mixing unit receives the reflected detection signal from the transmit/receive antenna unit for frequency demodulation; and

the frequency-mixing unit mixes and demodulates the reflected detection signal from the transmit/receive antenna unit with the output signal from the oscillation unit into a baseband output signal which represents a motion/vibration information.

2. The motion/vibration sensor according to claim 1 , further including:

a processing unit, coupled to the oscillation unit and the frequency-mixing unit, for receiving the baseband output signal from the frequency-mixing unit;

the processing unit controls an operation frequency of the oscillation unit and processes the baseband output signal from the frequency-mixing unit to obtain the motion/vibration information.

3. The motion/vibration sensor according to claim 2 , wherein the oscillation unit includes:

a first one of a pair of differential signal output ports, for outputting the output signal to the transmit/receive antenna unit and receiving the reflected detection signal from the transmit/receive antenna unit;

a second one of the pair of differential signal output ports, for sending the output signal to the frequency-mixing unit; and

a voltage input port, coupled to the processing unit, for receiving an analog control voltage from the processing unit.

4. The motion/vibration sensor according to claim 2 , wherein the oscillation unit includes:

a single-ended signal output port, for outputting the output signal to the transmit/receive antenna unit and the frequency-mixing unit;

an injection signal input port, for receiving the reflected detection signal from the transmit/receive antenna unit; and

a voltage input port, coupled to the processing unit, for receiving an analog control voltage from the processing unit.

5. The motion/vibration sensor according to claim 2 , wherein the oscillation unit includes:

a first one of a pair of differential signal output ports, for outputting the output signal to the transmit/receive antenna unit;

a second one of the pair of differential signal output ports, for outputting the output signal to the frequency-mixing unit;

an injection signal input port, for receiving the reflected detection signal from the transmit/receive antenna unit; and

a voltage input port, coupled to the processing unit, for receiving an analog control voltage from the processing unit.

6. The motion/vibration sensor according to claim 2 , wherein the frequency-mixing unit includes:

a mixer, coupled to the transmit/receive antenna unit and the oscillation unit, for mixing the reflected detection signal from the transmit/receive antenna unit and the output signal from the oscillation unit; and

a low pass filter, coupled to the mixer and the processing unit, for performing a low-pass filtering on a mixing signal from the mixer to generate the baseband output signal and output the baseband output signal to the processing unit.

7. The motion/vibration sensor according to claim 1 , wherein the transmit/receive antenna unit includes:

a first antenna, for transmitting the detection signal and receiving the reflected detection signal.

8. The motion/vibration sensor according to claim 1 , wherein the transmit/receive antenna unit includes:

a first antenna, for transmitting the detection signal; and

a second antenna, for receiving the reflected detection signal.

9. The motion/vibration sensor according to claim 1 , wherein the transmit/receive antenna unit includes:

an electrical-to-optical converter, for converting the output signal from the oscillation unit to an optical detection wave; and

an optical-to-electrical converter, for converting the reflected detection signal into a voltage signal and sending the voltage signal to the oscillation unit and the frequency-mixing unit.

10. A motion/vibration sensor, including:

a transmit/receive antenna unit;

an oscillation unit, coupled to the transmit/receive antenna unit; and

a frequency-mixing unit coupled to the transmit/receive antenna unit and the oscillation unit;

wherein the oscillation unit outputs a first output signal to the transmit/receive antenna unit and outputs a second output signal to the frequency-mixing unit;

the transmit/receive antenna unit receives the first output signal and transmits a detection signal toward at least one object according to the first output signal;

the transmit/receive antenna unit receives a reflected detection signal from the at least one object which reflects the detection signal as the reflected detection signal;

the transmit/receive antenna unit receives the reflected detection signal as a first injection signal and a second injection signal;

the oscillation unit receives the first injection signal from the transmit/receive antenna unit for self-injection locking;

the frequency-mixing unit mixes and demodulates the second injection signal from the transmit/receive antenna unit with the second output signal from the oscillation unit into a baseband output signal which represents a motion/vibration information.

11. The motion/vibration sensor according to claim 10 , further including:

a processing unit, coupled to the oscillation unit and the frequency-mixing unit, for receiving the baseband output signal from the frequency-mixing unit;

wherein the processing unit controls an operation frequency of the oscillation unit and processes the baseband output signal from the frequency-mixing unit to obtain the motion/vibration information.

12. The motion/vibration sensor according to claim 11 , wherein the oscillation unit includes:

a first one of a pair of differential signal output ports, for outputting the first output signal to the transmit/receive antenna unit and receiving the first injection signal from the transmit/receive antenna unit; and

a second one of the pair of differential signal output ports, for outputting the second output signal to the frequency-mixing unit.

13. The motion/vibration sensor according to claim 11 , wherein the oscillation unit includes:

a first one of a pair of differential signal output ports, for outputting the first output signal to the transmit/receive antenna unit;

a second one of the pair of differential signal output ports, for outputting the second output signal to the frequency-mixing unit; and

an injection signal input port, for receiving the first injection signal from the transmit/receive antenna unit.

14. The motion/vibration sensor according to claim 11 , wherein the frequency-mixing unit includes:

a mixer, coupled to the transmit/receive antenna unit and the oscillation unit, for mixing the second injection signal from the transmit/receive antenna unit and the second output signal from the oscillation unit; and

a low pass filter, coupled to the mixer and the processing unit, for performing a low-pass filtering on a mixing signal from the mixer to generate the baseband output signal and output the baseband output signal to the processing unit.

15. The motion/vibration sensor according to claim 11 , wherein the oscillation unit includes:

a single-ended signal output port, for outputting the first output signal to the transmit/receive antenna unit and the second output signal to the frequency-mixing unit; and

an injection signal input port, for receiving the first injection signal from the transmit/receive antenna unit.

16. The motion/vibration sensor according to claim 11 , wherein the oscillation unit includes:

a voltage input port for receiving a control voltage from the processing unit.

17. The motion/vibration sensor according to claim 10 , wherein the transmit/receive antenna unit includes:

a first antenna, for transmitting the detection signal and receiving the reflected detection signal.

18. The motion/vibration sensor according to claim 10 , wherein the transmit/receive antenna unit includes:

a first antenna, for transmitting the detection signal; and

a second antenna, for receiving the reflected detection signal.

19. The motion/vibration sensor according to claim 10 , wherein the transmit/receive antenna unit includes:

an electrical-to-optical converter, for converting the first output signal from the oscillation unit to an optical detection wave; and

an optical-to-electrical converter, for converting the reflected detection signal into a voltage signal and sending the voltage signal as the first injection signal and the second injection signal.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 10, 2014
From: HORNG, TZYY-SHENG; WANG, FU-KANG; PENG, KANG-CHUN
To: INDUSTRIAL TECHNOLOGY RESEARCH INSTITUTE; NATIONAL SUN YAT-SEN UNIVERSITY
Reel/Frame 031969/0456 →
Priority Claims (3)
TW 99115691 A · May 17, 2010 · national
TW 100136990 A · Oct 12, 2011 · national
TW 102109406 A · Mar 18, 2013 · national
Continuity (3)
Continuation In Part 13456849 · Apr 26, 2012
Continuation In Part 12886522 · Sep 20, 2010
Related Publication 20140128748A1 · May 8, 2014