IP Library › Granted Patent US 12,188,166
Granted Patent B2
US 12,188,166 · App. 17/733,349 · Granted Jan 7, 2025

Server, washing machine and washing system having thereof

Inventors: Kyungjae Kim (Suwon-si, KR); Jooyoo Kim (Suwon-si, KR); Hyungseon Song (Suwon-si, KR); Chanhyung Kong (Suwon-si, KR); Miyoung Yoo (Suwon-si, KR)
Assignee: Samsung Electronics Co., Ltd.
D06F34/04D06F34/06D06F34/22G05B13/027D06F2103/20D06F2105/42D06F2105/52D06F2105/56
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Quick Facts
Patent No.
US 12,188,166
App. No.
17/733,349
Granted
Jan 7, 2025
Kind
B2
Abstract

A server, a washing machine, and a washing system including the same are provided. The washing system includes a washing machine and a server configured to receive turbidity information of washing water from the washing machine at pre-set time intervals, identify an amount of change in turbidity information of the washing water for the pre-set time intervals based on the received turbidity information, predict turbidity information of the washing water based on the amount of change in turbidity information of the washing water, and transmit a control signal for controlling a washing cycle of the washing machine based on the predicted turbidity information of the washing water.

Claims (33)

1. A washing machine comprising:

a tub;

a sensor positioned within the tub and configured to measure a washing water turbidity;

a communicator; and

a processor configured to:

control the communicator to transmit first turbidity information of washing water measured at first pre-set time intervals by the sensor to a server, wherein the first turbidity information includes a first turbidity measurement for each of the first pre-set time intervals,

receive a first control signal for controlling a washing cycle based on predicted turbidity information of washing water at a second pre-set time interval, the predicted turbidity information predicted based on the first turbidity information and on weather information,

obtain, from the sensor, a second turbidity measurement at the second pre-set time interval,

control the communicator to transmit second turbidity information of washing water including the second turbidity measurement to the server,

receive a second control signal for controlling the washing cycle based on an amount of change between the predicted turbidity information and the second turbidity information from the server through the communicator, and

control the washing cycle based on the second control signal.

2. The washing machine of claim 1 , wherein the processor is further configured to control, based on the second control signal, at least one of a washing time, an amount of detergent put in, or a number of rinses.

3. The washing machine of claim 2 ,

wherein, based on a turbidity pattern of the washing water being a rising pattern where turbidity information of washing water increases over time, the second control signal comprises a signal for reducing at least one of the washing time, the amount of detergent put in, or the number of rinses, and

wherein, based on the turbidity pattern of the washing water being a descending pattern where turbidity information of washing water decreases over time, the second control signal comprises a signal for increasing at least one of the washing time, the amount of detergent put in, or the number of rinses.

4. The washing machine of claim 3 ,

wherein, based on the turbidity pattern of the washing water being the rising pattern, and a difference between a most recent turbidity information of the washing water and the predicted turbidity information of the washing water being greater than or equal to a first threshold value, the second control signal comprises at least one of a signal for reducing the washing time by a first time, a signal for reducing the amount of detergent put in by a first quantity, or a signal for reducing the number of rinses by a first number of times, and

wherein, based on the turbidity pattern of the washing water being the rising pattern, and the difference between the most recent turbidity information of the washing water and the predicted turbidity information of the washing water being greater than or equal to a second threshold value which is higher than the first threshold value, the second control signal comprises at least one of a signal for reducing the washing time by a second time which is longer than the first time, a signal for reducing the amount of detergent put in by a second quantity which is greater than the first quantity, or a signal for reducing the number of rinses by a second number of times which is greater than the first number of times.

5. The washing machine of claim 3 ,

wherein, based on the turbidity pattern of the washing water being the descending pattern, and a difference between a most recent turbidity information of the washing water and the predicted turbidity information of the washing water being greater than or equal to a third threshold value, the second control signal comprises at least one of a signal for increasing the washing time by a third time, a signal for increasing the amount of detergent put in by a third quantity, or a signal for increasing the number of rinses by a third number of times, and

wherein, based on the turbidity pattern of the washing water being the descending pattern, and the difference between the most recent turbidity information of the washing water and the predicted turbidity information of the washing water being greater than or equal to a fourth threshold value which is higher than the third threshold value, the second control signal comprises at least one of a signal for increasing the washing time by a fourth time which is shorter than the third time, a signal for increasing the amount of detergent put in by a fourth quantity which is less than the third quantity, or a signal for increasing the number of rinses by a fourth number of times which is less than the third number of times.

6. The washing machine of claim 1 ,

wherein

first pre-set time intervals are within a defaulted time section, and

wherein the predicted turbidity information is turbidity information of the washing water from the defaulted time section to after a pre-set time interval determined by identifying an amount of change in turbidity information of the washing water for the first pre-set time intervals for the defaulted time section.

7. The washing machine of claim 1 ,

wherein the predicted turbidity information is predicted by a neural network model stored in the server,

wherein the neural network model is a model configured to identify an amount of change in turbidity information of the washing water for the first pre-set time intervals using the turbidity information of the washing water generated by at least one washing machine at the first pre-set time intervals as input data, and

wherein the neural network model is trained to predict the turbidity information of the washing water based on the amount of change in turbidity information of the washing water.

8. The washing machine of claim 1 ,

wherein the predicted turbidity information is predicted by a neural network model stored in the server,

wherein the neural network model is a model configured to identify the amount of change in turbidity information of the washing water for the first pre-set time intervals using washing information comprising turbidity information of the washing water generated by the at least one washing machine at the first pre-set time intervals, a washing course set in the at least one washing machine, a weight of a laundry, and a temperature of the washing water and weather information as input data, and

wherein the neural network model is trained to predict turbidity information of the washing water corresponding to the washing information based on the amount of change in turbidity information of the washing water.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 29, 2022
From: KIM, KYUNGJAE; KIM, JOOYOO; SONG, HYUNGSEON; KONG, CHANHYUNG; YOO, MIYOUNG
To: SAMSUNG ELECTRONICS CO., LTD.
Reel/Frame 059712/0650 →
Priority Claims (1)
KR 10-2021-0005575 · Jan 14, 2021 · national
Continuity (2)
Continuation PCTKR2021016120 · Nov 8, 2021
Related Publication 20220259788A1 · Aug 18, 2022
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