Washing machine and method for detecting unbalanced state of laundry therein
A washing machine which determines an unbalanced state of laundry using an unbalance value and a variation of the unbalance value according to time so as to reduce the generation of vibration and noise, and a method for detecting the unbalanced state of the laundry therein. The washing machine includes a rotary tub containing laundry, a washing motor for rotating the rotary tub, a motor speed detecting unit detecting the speed of the washing motor and outputting a motor speed signal, and a controller calculating an unbalance value of the laundry and a variation of the unbalance value using the motor speed signal, determining the unbalanced state of the laundry in the rotary tub using the unbalance value and the variation of the unbalance value, and controlling the washing motor according to determination results.
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This application claims the benefit of Korean Patent Application No. 2005-106000, filed Nov. 7, 2005, in the Korean Intellectual Property Office, the disclosure of which is incorporated herein by reference.
BACKGROUND OF THE INVENTION1. Field of the Invention
The present invention relates to a washing machine and a method for detecting an unbalanced state of laundry therein More particularly, to a washing machine, which determines whether laundry in a rotary tub is in an unbalanced state from an unbalance value calculated using the speed of the laundry and a variation of the unbalance value, and a method for detecting the unbalanced state of the laundry therein.
2. Description of the Related Art
Generally, conventional washing machines are apparatuses for removing various contaminants from laundry using emulsification of a detergent, friction between a rotary tub and the laundry placed therein due to the rotation of the rotary tub, and impact applied to the laundry due to the rotation of the washing tub.
In
Conventionally, in order to determine whether the laundry is in the unbalanced state, a vibration of the speed of a washing motor is used.
Further, as shown in
When the rotating speed of the rotary tub is lowered so as to prevent vibration and noise due to the conical unbalanced state, the deviation of the rotating speed of the rotary tub is reduced, thereby causing a difficulty in sensing the unbalanced state and generating noise due to vibration during the dehydrating operation caused by an error in sensing the unbalanced state.
SUMMARY OF THE INVENTIONAccordingly, it is an aspect of the present invention to provide a washing machine which precisely detects an unbalanced state of laundry so as to reduce vibration and noise, and a method for detecting the unbalanced state of laundry therein.
It is another aspect of the present invention is to provide a washing machine, which precisely detects an unbalanced state of laundry, particularly a conical unbalanced state of the laundry, even at a low rpm so as to reduce vibration and noise and to shorten a time taken to perform a total washing operation, and a method for detecting the unbalanced state of laundry therein.
Additional aspects and/or advantages of the invention will be set forth in part in the description which follows and, in part, will be apparent from the description, or may be learned by practice of the invention.
The foregoing and/or other aspects of the present invention are achieved by providing a washing machine including a rotary tub containing laundry therein, a washing motor rotating the rotary tub, a motor speed detecting unit detecting a speed of the washing motor and outputting a motor speed signal, and a controller calculating an unbalance value of the laundry and a variation of the unbalance value using the motor speed signal, determining the unbalanced state of the laundry in the rotary tub using the unbalance value and a variation of the unbalance value, and controlling the washing motor according to determination results.
The controller calculates the unbalance value of the laundry and the variation of the unbalance value using a speed ripple extracted from the motor speed signal.
The controller calculates the unbalance value of the laundry and the variation of the unbalance value by detecting the speed ripple in real time.
The controller calculates the unbalance value of the laundry and the variation of the unbalance value using the speed ripple extracted from the motor speed signal during a change of the speed of the washing motor.
The controller includes a motor speed processing unit detecting a speed ripple from the motor speed signal and calculating an absolute value of the detected speed ripple, and calculating the unbalance value and the variation of the unbalance value using the absolute value of the speed ripple.
The controller further includes an unbalance value detecting unit calculating the unbalance value using the absolute value of the speed ripple. The unbalance value detecting unit is a low-pass filter (LPF).
The controller determines the unbalanced state of the laundry in the rotary tub by respectively comparing the unbalance value and the variation of the unbalance value to predetermined first reference values and by comparing another unbalance value of laundry, obtained by increasing an rpm of the washing motor, to a predetermined second reference value.
The unbalance state of the laundry is determined by comparing a conical unbalance value to the predetermined first and second reference values.
It is another aspect of the present invention to provide a method for detecting an unbalanced state of laundry in a washing machine having a rotary tub containing the laundry and a washing motor rotating the rotary tub, the method including detecting a rotating speed of the washing motor and outputting a motor speed signal, calculating an unbalance value of the laundry contained in the rotary tub and a variation of the unbalance value using the outputted motor speed signal, and determining the unbalanced state of the laundry by comparing the unbalance value and the variation of the unbalance value to respective reference values.
The calculation of the unbalance value of the laundry and the variation of the unbalance value includes extracting a speed ripple from the outputted motor speed signal; and calculating the unbalance value and the variation of the unbalance value using the extracted speed ripple.
The unbalance value of the laundry and the variation of the unbalance value is calculated in real time using the speed ripple extracted in real time.
The unbalance value of the laundry and the variation of the unbalance value is calculated using the speed ripple extracted during a change of the speed of the washing motor.
The calculation of the unbalance value of the laundry and the variation of the unbalance value further includes calculating an absolute value of the extracted speed ripple, and the unbalance value of the laundry and the variation of the unbalance value is calculated using the absolute value.
The determination of the unbalanced state of the laundry includes respectively comparing the unbalance value and the variation of the unbalance value to predetermined first reference values, increasing the rpm of the washing motor, and comparing a newly obtained unbalance value to a predetermined second reference value.
The unbalance state of the laundry is determined by comparing a conical unbalance value to the predetermined first and second reference values.
BRIEF DESCRIPTION OF THE DRAWINGSThese and/or other aspects and advantages of the invention will become apparent and more readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings in which:
Reference will now be made in detail to an embodiment of the present invention, an example of which is illustrated in the accompanying drawings, wherein like reference numerals refer to like elements throughout. The embodiment is described below to explain the present invention by referring to the figures.
The washing machine of the present invention is driven by various operating instructions inputted through the input unit 40 by a user. The controller 42 analyzes the operating instructions inputted by the user, and outputs a control signal to the motor driving unit 44. The motor driving unit 44 receives the control signal, and outputs an operating signal, such as a PWM signal, to the washing motor 45. The washing motor 45 is driven at a proper rpm according to the inputted operating signal. The motor speed detecting unit 46 detects the rotating speed of the washing motor 45, and outputs a motor speed signal to the controller 42. The motor speed detecting unit 46 is a hall sensor or an encoder, for example. However, the motor speed detecting unit is not limited thereto, and may vary, as necessary.
The speed ripple absolute value (Y3) is inputted to an unbalance value detecting unit 52, and then the unbalance value detecting unit 52 outputs a current unbalance value (Y4). The unbalance value detecting unit 52 comprises a low-pass filter (LPF), and receives the speed ripple absolute value (Y3) and outputs the current unbalance value (Y4), which is easily compared. Further, since noise having no relation with the unbalanced state is removed by the LPF, it is possible to precisely determine the unbalanced state of laundry.
The unbalance value (Y4) outputted from the unbalance value detecting unit 52 is inputted to an unbalance value variation calculating unit 54. The unbalance value variation calculating unit 54 performs sampling of unbalance values (Y4) for a designated time and divides the sum of the total of the unbalance values (Y4) by the time, thereby producing a variation of the unbalance values (Y4) according to time. The unbalance values (Y4) and the variation of the unbalance values (Y4) according to time are inputted to an unbalanced state determining unit 56. The unbalanced state determining unit 56 compares the unbalance values (Y4) and the variation of the unbalance values (Y4) according to time to reference values, thereby determining the unbalanced state of laundry. When it is determined that the laundry is in an unbalanced state, a motor control unit 58 stops the operation of the washing motor, and appropriately controls the washing motor 45 so as to perform a laundry winding operation again. When it is determined that the laundry is in a balanced state, the motor control unit 58 increases the rpm of the washing motor to start a high-speed dehydrating mode.
In the present invention, since the unbalanced state of laundry is sensed using the variation of the unbalance value according to time, it is possible to precisely sense a common unbalanced state as well as the conical unbalanced state at a comparatively low rpm. That is, when an unbalance value detected at a low rpm and the variation of the unbalance value according to time are obtained, an unbalance value at a designated resonance frequency band is calculated, and thus it is possible to precisely and effectively sense the unbalanced state of laundry.
Further, since the detection of a pure unbalance value is achieved by removing noise using the extracting of the speed ripple, it is possible to calculate the unbalance value during the changing of the speed in real time and thus to calculate the variation of the unbalance value according to time.
Accordingly, the determination of the unbalanced state is achieved by calculating unbalance values and the variation of the unbalance values according to time under the condition that the speed of the washing motor is increased from 100 rpm to 400 rpm, as shown in
As apparent from the above description, the present invention provides a washing machine, which determines whether laundry in a rotary tub is in an unbalanced state using an unbalance value and a variation of the unbalance value according to time using a speed ripple of a washing motor so that the unbalanced state of the laundry in the rotary tub can be precisely sensed, and a method for detecting the unbalanced state of the laundry therein.
Since the unbalanced state of the laundry in the rotary tub of the washing machine is sensed using the variation of the unbalance value according to time as well as the unbalance value, it is possible to precisely sense the unbalanced state of the laundry at a low rpm.
Further, the washing machine of the present invention precisely senses a conical unbalanced state of laundry at a low rpm.
Since the unbalanced state of the laundry is sensed at a low rpm, a time taken to perform the total washing operation of the washing machine is shortened.
Although an embodiment of the invention has been shown and described, it would be appreciated by those skilled in the art that changes may be made in this embodiment without departing from the principles and spirit of the invention, the scope of which is defined in the claims and their equivalents.
Claims
1. A washing machine comprising:
- a rotary tub containing laundry therein;
- a washing motor rotating the rotary tub;
- a motor speed detecting unit detecting a speed of the washing motor and outputting a motor speed signal; and
- a controller calculating an unbalance value of the laundry and a variation of the unbalance value using the motor speed signal, determining an unbalanced state of the laundry in the rotary tub using the unbalance value and a variation of the unbalance value, and controlling the washing motor according to determination results.
2. The washing machine as set forth in claim 1, wherein the controller calculates the unbalance value of the laundry and the variation of the unbalance value using a speed ripple extracted from the motor speed signal.
3. The washing machine as set forth in claim 2, wherein the controller calculates the unbalance value of the laundry and the variation of the unbalance value by detecting the speed ripple in real time.
4. The washing machine as set forth in claim 2, wherein the controller calculates the unbalance value of the laundry and the variation of the unbalance value using the speed ripple extracted from the motor speed signal during a change of the speed of the washing motor.
5. The washing machine as set forth in claim 1, wherein the controller comprises a motor speed signal processing unit detecting a speed ripple from the motor speed signal and calculating an absolute value of the detected speed ripple, and calculates the unbalance value and the variation of the unbalance value using the absolute value of the speed ripple.
6. The washing machine as set forth in claim 5, wherein the controller further comprises an unbalance value detecting unit calculating the unbalance value using the absolute value of the speed ripple.
7. The washing machine as set forth in claim 6, wherein the unbalance value detecting unit is a low-pass filter (LPF).
8. The washing machine as set forth in claim 1, wherein the controller determines the unbalanced state of the laundry in the rotary tub by respectively comparing the unbalance value and the variation of the unbalance value to predetermined first reference values and by comparing another unbalance value of laundry, obtained by increasing the rpm of the washing motor, to a predetermined second reference value.
9. The washing machine as set forth in claim 8, wherein the unbalance state of the laundry is determined by comparing a conical unbalance value to the predetermined first and second reference values.
10. A method for detecting an unbalanced state of laundry in a washing machine, having a rotary tub containing the laundry and a washing motor for rotating the rotary tub, the method comprising:
- detecting a rotating speed of the washing motor and outputting a motor speed signal;
- calculating an unbalance value of the laundry contained in the rotary tub and a variation of the unbalance value using the outputted motor speed signal; and
- determining an unbalanced state of the laundry by comparing the unbalance value and the variation of the unbalance value to respective reference values.
11. The method as set forth in claim 10, wherein calculating the unbalance value of the laundry and the variation of the unbalance value comprises:
- extracting a speed ripple from the outputted motor speed signal; and
- calculating the unbalance value and the variation of the unbalance value using the extracted speed ripple.
12. The method as set forth in claim 11, wherein the unbalance value of the laundry and the variation of the unbalance value are calculated in real time using the speed ripple extracted in real time.
13. The method as set forth in claim 11, wherein the unbalance value of the laundry and the variation of the unbalance value are calculated using the speed ripple extracted during the changing of the speed of the washing motor.
14. The method as set forth in claim 11, wherein the calculation of the unbalance value of the laundry and the variation of the unbalance value further comprises calculating an absolute value of the extracted speed ripple, and the unbalance value of the laundry and the variation of the unbalance value are calculated using the absolute value.
15. The method as set forth in claim 10, wherein determining the unbalanced state of the laundry comprises:
- respectively comparing the unbalance value and the variation of the unbalance value to predetermined first reference values;
- increasing the rpm of the washing motor; and
- comparing a newly obtained unbalance value to a predetermined second reference value.
16. The method as set forth in claim 15, wherein the unbalanced state of the laundry is determined by comparing a conical unbalance value to the predetermined first and second reference values.
Type: Application
Filed: Apr 24, 2006
Publication Date: May 10, 2007
Applicant: SAMSUNG ELECTRONICS CO., LTD. (Suwon-si)
Inventors: Chang Park (Seoul), Yoji Okajaki (Suwon-Si), Chang Kim (Suwon-Si), Myung Kim (Yongin-Si), Jung Choi (Suwon-Si)
Application Number: 11/409,051
International Classification: D06F 33/00 (20060101); D06F 23/00 (20060101); D06F 35/00 (20060101);