WO2017113159A1 - Procédé et dispositif de détection de port de montre intelligente, et montre intelligente - Google Patents

Procédé et dispositif de détection de port de montre intelligente, et montre intelligente Download PDF

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Publication number
WO2017113159A1
WO2017113159A1 PCT/CN2015/099802 CN2015099802W WO2017113159A1 WO 2017113159 A1 WO2017113159 A1 WO 2017113159A1 CN 2015099802 W CN2015099802 W CN 2015099802W WO 2017113159 A1 WO2017113159 A1 WO 2017113159A1
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WO
WIPO (PCT)
Prior art keywords
smart watch
wearing
distance
external obstacle
preset
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PCT/CN2015/099802
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English (en)
Chinese (zh)
Inventor
代杰
汪永江
Original Assignee
深圳市鼎芯东方科技有限公司
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Priority to PCT/CN2015/099802 priority Critical patent/WO2017113159A1/fr
Publication of WO2017113159A1 publication Critical patent/WO2017113159A1/fr

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    • GPHYSICS
    • G04HOROLOGY
    • G04GELECTRONIC TIME-PIECES
    • G04G21/00Input or output devices integrated in time-pieces
    • G04G21/02Detectors of external physical values, e.g. temperature

Definitions

  • the present invention relates to the field of smart watch technology, and in particular, to a smart watch wearing detection method, device, and smart watch.
  • smart watches are more and more popular, and smart watches have more and more intelligent functions, such as monitoring sleep, monitoring heart rate and monitoring movement, etc., and can detect whether the user is Wear a smart watch.
  • the current smart watches usually use infrared rays for wear detection, that is, the infrared sensor is used to detect the distance between the smart watch and the obstacle to judge whether to wear, but this detection method is extremely easy to misjudge, especially when the user removes the watch. Placed on the desktop, it is impossible to guarantee the accuracy of the smart watch wearing detection.
  • a main object of the present invention is to provide a smart watch wearing detection method, which can reduce the false positive rate of wearing detection and improve the accuracy of smart watch wearing detection.
  • the present invention provides a smart watch wearing detection method, and the smart watch wearing detection method includes the following steps:
  • the distance between the smart watch and the external obstacle is detected by the infrared detecting module
  • the distance between the smart watch and the external obstacle is less than or equal to the preset distance ⁇ , and the external obstacle contacts the temperature detecting module of the smart watch, and the temperature of the external obstacle is detected by the temperature detecting module; [0010] When the temperature of the external obstacle is within a preset temperature range, it is determined that the smart watch is in the wearing mode.
  • the smart watch wearing detecting method further comprises the steps of:
  • the smart watch wears
  • the wearing detection method also includes the steps:
  • the smart watch wearing detection method further comprises the steps of:
  • determining whether the smart watch is in the non-wearing mode is greater than the second preset time, and if so, repeatedly detecting whether the smart watch is worn; if not, maintaining the smart watch in the non-wearing mode.
  • the smart watch wearing detecting method further includes the steps of:
  • determining whether the smart watch is in the wearing mode is greater than the second preset time, and if so, repeatedly detecting whether the smart watch is worn; if not, maintaining the smart watch in the wearing mode.
  • the present invention further provides a smart watch, the smart watch comprising: [0020] an infrared detecting module, configured to detect a smart watch after the smart watch starts the first preset time The distance between external obstacles;
  • a temperature detecting module configured to: the distance between the smart watch and the external obstacle is less than or equal to a preset distance ⁇ , and the external obstacle contacts the temperature detecting module, and the temperature of the external obstacle is detected by the temperature detecting module;
  • the control module is configured to determine that the smart watch is in a wearing mode when the temperature of the external obstacle is within a preset temperature range.
  • control module is further configured to:
  • control module is further configured to:
  • control module further includes a determining module, where the determining module is configured to:
  • determining whether the smart watch is in the non-wearing mode is greater than the second preset time, and if so, repeatedly detecting whether the smart watch is worn; if not, maintaining the smart watch in the non-wearing mode.
  • the determining module is configured to: [0031] determining whether the smart watch is in the wearing mode is greater than the second preset time, and if so, repeatedly detecting whether the smart watch is worn; if not, maintaining the smart watch in the wearing mode.
  • the present invention also provides a wearing detection device for a smart watch, comprising:
  • a first acquisition determining unit configured to obtain a light intensity value of an environment where the back of the smart watch is located, and compare the preset light intensity threshold to obtain a first determination result
  • a second acquisition determining unit configured to obtain a distance value between the back of the smart watch and the nearest obstacle, and compare with a preset distance threshold to obtain a second determination result
  • a determining unit configured to: if the first determination result and the second determination result are both the smart watch satisfying the wearing condition
  • the device further includes:
  • an opening unit for controlling a smart watch to enter a wearing mode, and activating a designated application of the smart watch;
  • the closing unit is configured to control the smart watch to enter the non-wearing mode, and the specified application of the smart watch is turned off.
  • the device further includes:
  • a repeating unit configured to repeatedly detect whether the smart watch is worn according to the specified interval, and cause the smart watch to enter a corresponding wearing mode or a non-wearing mode according to the detection result.
  • the first obtaining determining unit includes:
  • the first meter acquisition module is configured to obtain the light intensity value of the environment where the back of the smart watch is located for the first designated time.
  • the second acquisition determining unit includes:
  • the second counting acquisition module is configured to obtain a distance value between the back of the smart watch and the nearest obstacle for the second specified time.
  • the infrared detecting module detects the distance between the smart watch and the external obstacle; if the distance between the smart watch and the external obstacle is less than or equal to the preset distance, The temperature of the external obstacle is detected by the temperature detecting module; when the temperature of the external obstacle is within a preset temperature range, the smart watch is determined to be in the wearing mode. Through double detection of distance and temperature, It proves the accuracy of the smart watch wearing detection, thereby reducing the false positive rate of wearing detection.
  • the wearing detection device of the smart watch of the present invention detects the light intensity of the environment in which the back of the smart watch is located, and detects the distance between the back of the smart watch and the nearest obstacle, and then respectively compares with the preset threshold, and finally judges according to the comparison result. Whether the smart watch is worn or not, whether the smart watch is worn by detecting the light intensity and the distance can improve the accuracy of the detection.
  • FIG. 1 is a schematic flow chart of a first embodiment of a smart watch wearing detection method according to the present invention
  • FIG. 2 is a schematic flow chart of a second embodiment of a smart watch wearing detection method according to the present invention.
  • FIG. 3 is a schematic flow chart of a third embodiment of a smart watch wearing detection method according to the present invention.
  • FIG. 4 is a schematic flow chart of a fourth embodiment of a smart watch wearing detection method according to the present invention.
  • FIG. 5 is a schematic diagram of functional modules of a first embodiment of a smart watch according to the present invention.
  • FIG. 6 is a schematic diagram of functional modules of a second embodiment of a smart watch according to the present invention.
  • FIG. 7 is a schematic block diagram of a wearing detection device for a smart watch according to an embodiment of the present invention.
  • FIG. 8 is a schematic block diagram of a wearing detection device for a smart watch according to an embodiment of the present invention.
  • FIG. 9 is a schematic block diagram showing the structure of a first acquisition determining unit according to an embodiment of the present invention.
  • FIG. 10 is a schematic block diagram showing the structure of a second acquisition determining unit according to an embodiment of the present invention.
  • the present invention provides a smart watch wearing detection method.
  • FIG. 1 is a schematic flow chart of a first embodiment of a smart watch wearing detection method according to the present invention.
  • the smart watch wearing detection method includes:
  • Step S10 After the smart watch starts the first preset time, the distance between the smart watch and the external obstacle is detected by the infrared detecting module;
  • Step S20 the distance between the smart watch and the external obstacle is less than or equal to the preset distance ⁇ , and the external obstacle contacts the temperature detecting module of the smart watch, and the temperature of the external obstacle is detected by the temperature detecting module;
  • Step S30 determining that the smart watch is in a wearing mode when the temperature of the external obstacle is within a preset temperature range.
  • the first preset time can be preset in the smart watch system, for example, can be set 5s or 10s, until the smart watch system is stable; then, through the infrared detection module to detect the distance between the smart watch and the external obstacle, to determine whether the distance between the smart watch and the external obstacle is less than or equal to the preset distance, because only The distance of the external obstacle is close enough to indicate that the smart watch is likely to be in the wearing mode, based on which a distance for comparison is preset according to the distance between the wearing of the smart watch and the skin surface of the human wrist.
  • the preset temperature range is set according to the upper and lower limit values of the body temperature of the human body.
  • the external obstacle is The wrist of the human body can further determine that the smart watch is in the wearing mode. In this embodiment, after determining that the smart watch is in the wearing mode, the related sensor function of the smart watch is activated.
  • the infrared detecting module may be an infrared distance sensor; the temperature detecting module may be a temperature sensor; and the control module may be a microprocessor.
  • the distance between the smart watch and the external obstacle is detected by the infrared detecting module; if the distance between the smart watch and the external obstacle is less than or equal to the preset distance
  • the temperature of the external obstacle is detected by the temperature detecting module; when the temperature of the external obstacle is within a preset temperature range, the smart watch is determined to be in the wearing mode.
  • FIG. 2 is a schematic flow chart of a second embodiment of a smart watch wearing detection method according to the present invention.
  • a second embodiment is provided.
  • the method further includes:
  • Step S40 if the distance between the smart watch and the external obstacle is greater than the preset distance, determining the smart The watch is in non-wearing mode.
  • the distance between the smart watch and the external obstacle detected by the infrared detecting module is greater than the preset distance, it indicates that the smart watch cannot be worn on the wrist of the person, so it can be determined that the smart watch is in the non-wearing mode, ⁇ , turn off the sensor function of the smart watch, only the infrared detection module and the temperature detection module.
  • FIG. 3 is a schematic flow chart of a third embodiment of a smart watch wearing detection method according to the present invention.
  • a third embodiment is provided.
  • the method further includes:
  • Step S50 If the temperature of the external obstacle is outside the preset temperature range, determining that the smart watch is in the non-wearing mode.
  • the temperature detecting module After determining that the distance between the smart watch and the external obstacle is less than or equal to the preset distance, if the temperature detecting module detects that the temperature of the external obstacle is outside the preset temperature range, it indicates that the smart watch is likely to be laid flat On the table or other placement platform, it is impossible to wear on the person's wrist, so it can be determined that the smart watch is in the non-wearing mode. Therefore, the relevant sensor function of the smart watch is turned off, and only the infrared detection module and the temperature detection module are operated. .
  • the method further includes:
  • determining whether the smart watch is in the non-wearing mode is greater than the second preset time, and if so, repeatedly detecting whether the smart watch is worn; if not, maintaining the smart watch in the non-wearing mode.
  • the second preset time may be pre-set in the smart watch system. For example, any number of minutes that can be set to 1-10, or set to an integer number of seconds such as 20s, 30s, etc., when the smart watch is in the non-wearing mode is greater than the second preset time, repeatedly detecting whether the smart watch is worn, That is, the distance between the smart watch and the external obstacle is detected by the infrared detecting module, and the judgment of the above steps S10-S30 is continued, and no further description is made herein; for example, the time when the smart watch is in the non-wearing mode is less than or equal to the second preset. During the day, keep the smart watch in the previous non-wearing mode.
  • FIG. 4 is a schematic flow chart of a fourth embodiment of a smart watch wearing detection method according to the present invention.
  • the method further includes:
  • Step S60 determining whether the time when the watch is in the wearing mode is greater than the second preset time, and if so, repeatedly detecting whether the smart watch is worn; if not, executing step S61;
  • Step S61 Keep the smart watch in the wearing mode.
  • the second preset time may be preset in the smart watch system, for example, Any number of minutes set to 1-10 can also be set to an integer number of seconds such as 20s, 30s, etc.
  • the time is greater than the second preset time, and the smart watch is repeatedly detected.
  • the distance between the smart watch and the external obstacle is detected by the infrared detecting module, and the determination of the above steps S10-S3 0 is continued, and no further description is made herein; for example, if the smart watch is in the wearing mode, the time is less than or equal to the second preset time. Then keep the smart watch in the previous wearing mode.
  • the present invention also provides a smart watch.
  • FIG. 5 is a schematic diagram of functional modules of a first embodiment of a smart watch according to the present invention.
  • the smart watch includes:
  • the infrared detecting module 10 is configured to detect a distance between the smart watch and an external obstacle after the smart watch starts the first preset time;
  • the temperature detecting module 20 is configured to: the distance between the smart watch and the external obstacle is less than or equal to the preset distance ⁇ , and the external obstacle contacts the temperature detecting module, and the temperature of the external obstacle is detected by the temperature detecting module ;
  • the control module 30 is configured to determine that the smart watch is in a wearing mode when the temperature of the external obstacle is within a preset temperature range.
  • the infrared detecting module 10 and the temperature detecting module 20 of the smart watch are activated, and continue for a first preset time, and the first preset time can be preset in the smart watch system, for example, It can be set to 5s or 10s, and the smart watch system is stable; then, the distance between the smart watch and the external obstacle is detected by the infrared detecting module 10, and it is judged whether the distance between the smart watch and the external obstacle is less than or equal to the preset distance.
  • a distance for comparison is preset according to the distance between the wearing surface of the smart watch and the skin surface of the human wrist.
  • the distance between the smart watch and the external obstacle is less than or equal to the preset distance ⁇ , and the external obstacle is in contact with the temperature detecting module of the smart watch, indicating that the obstacle may be a human wrist, that is, the smart watch may be in the wearing mode, so, in order to avoid the smart watch may be placed flat on the table or other places
  • the temperature of the external obstacle is further detected by the temperature detecting module 20, and it is determined whether the temperature of the external obstacle is within a preset temperature range, and the preset temperature range is according to the human body.
  • the upper limit value and the lower limit value of the body temperature are set, when the temperature of the external obstacle is within a preset temperature range, indicating that the external obstacle is a human wrist, so that the control module 30 can further determine that the smart watch is worn.
  • Mode in this embodiment, after determining that the smart watch is in the wearing mode, the related sensor function of the smart watch is activated.
  • the infrared detecting module may be an infrared distance sensor; the temperature detecting module may be a temperature sensor; and the control module may be a microprocessor.
  • the infrared detecting module 10 detects the distance between the smart watch and the external obstacle; if the distance between the smart watch and the external obstacle is less than or equal to the preset The distance, the temperature of the external obstacle is detected by the temperature detecting module 20; when the temperature of the external obstacle is within a preset temperature range, the control module 30 determines that the smart watch is in the wearing mode. Through the double detection of distance and temperature, the accuracy of the wearing of the smart watch is ensured, thereby reducing the false positive rate of wearing detection.
  • control module 30 is further configured to:
  • the distance between the smart watch and the external obstacle detected by the infrared detecting module 10 is greater than the preset distance, it indicates that the smart watch cannot be worn on the wrist of the person, so that the smart watch can be determined to be in the non-wearing mode. In this case, the related sensor function of the smart watch is turned off, and only the infrared detecting module 10 and the temperature detecting module 20 are operated.
  • FIG. 6 is a schematic diagram of functional modules of a second embodiment of a smart watch according to the present invention.
  • the smart watch further includes a determining module 40, and the determining module 40 is configured to:
  • determining whether the smart watch is in the non-wearing mode is greater than the second preset time, and if so, repeatedly detecting whether the smart watch is worn; if not, maintaining the smart watch in the non-wearing mode.
  • the determining module 40 determines whether the time when the smart watch is in the non-wearing mode is greater than the second preset time, and the second preset time can be performed in the smart watch system. Pre-set, for example, any number of minutes that can be set to 1-10, or set to an integer number of seconds such as 20s, 30s, etc. When the smart watch is in the non-wearing mode, the time is greater than the second preset time, and the smart watch is repeatedly detected.
  • the determining module 40 is further configured to:
  • the determining module 40 determines whether the time when the smart watch is in the wearing mode is greater than the second preset time, and the second preset time can be preset in the smart watch system. For example, any number of minutes that can be set to 1-10, or an integer number of seconds such as 20s, 30s, etc., when the smart watch is in the wearing mode is greater than the second preset time, repeatedly detecting whether the smart watch is worn, That is, the distance between the smart watch and the external obstacle is detected by the infrared detecting module, and the determination of the above steps S10-S30 is continued, and no further description is made herein; for example, the time when the smart watch is in the wearing mode is less than or equal to the second preset. In between, keep the smart watch in the previous wearing mode.
  • a wear detecting device for a smart watch including:
  • the first acquisition determining unit 10 is configured to obtain a light intensity value of an environment where the back of the smart watch is located, and compare the preset light intensity threshold to obtain a first determination result;
  • the second acquisition determining unit 20 is configured to obtain a distance value between the back of the smart watch and the nearest obstacle, and compare with the preset distance threshold to obtain a second determination result;
  • the determining unit 30 is configured to: if the first determination result and the second determination result are that the smart watch meets the wearing strip Then, it is determined that the smart watch has been worn; if one of the first judgment result and the second judgment result is that the smart watch does not satisfy the wearing condition, it is determined that the smart watch is not worn.
  • the first obtaining determination unit 10 and the second obtaining determining unit 20 may work in a sequential order or in the same manner.
  • the first acquisition judging unit 10 and the second acquisition judging unit 20 work sequentially, if the result of the first work unit detection is that the smart watch does not satisfy the wearing condition, the subsequent detecting step may be stopped, starting from the new one. Detection.
  • the first acquisition determination unit 10 the smart watch is wearing a cymbal, and its back is close to the human wrist, so the light on the back of the smart watch is darker than the outer side, so the light intensity on the back of the smart watch can be used as a judgment smart watch. Whether to wear the judgment conditions.
  • the obtaining process of the first determination result is: if the light intensity value is greater than the light intensity threshold, determining that the smart watch does not satisfy the wearing condition, and if the light intensity value is less than or equal to the light intensity threshold, determining that the smart watch meets the wearing condition .
  • the second acquisition determining unit 20 the smart watch is wearing the cymbal, and the back of the smart watch is close to the wrist of the human body. Therefore, the distance from the back of the smart watch to the wrist can also be used as a judgment condition for judging whether the smart watch is worn or not.
  • the obtaining process of the result is: if the distance value is greater than the distance threshold, it is determined that the smart watch does not satisfy the wearing condition, and if the distance value is less than or equal to the distance threshold, it is preliminarily determined that the smart watch satisfies the wearing condition.
  • the judging unit 30 determines that the smart watch has been worn only if the first judgment result and the second judgment result are all that the smart watch satisfies the wearing condition, and if there is an unsatisfied wearing condition, the smart watch is determined not to be determined. Wearing, this can greatly improve the accuracy of detecting whether the smart watch has been worn.
  • the wearing detection device of the smart watch further includes:
  • the activation unit 40 is configured to control the smart watch to enter the wearing mode, and activate the designated application of the smart watch; and/or,
  • the closing unit 50 is configured to control the smart watch to enter the non-wearing mode, and close the designated application of the smart watch.
  • the specified application is an application that needs to be opened when the watch is worn, such as detecting the heart rate of the wearer, then the heart rate sensor and its corresponding application are required to be detected; and the movement of the wearer is detected. Then you need to start the motion sensor and its corresponding application, etc.; or other GPS and its Applications, etc., users do not need to take the initiative to open, so that the wearer can use.
  • the specified application may pre-set the application according to the wearer's usage habits, and when the wear mode is entered, only the set applications that need to be activated are automatically activated.
  • the specified application may preset the non-wearing mode, which applications are closed, and which applications do not need to be closed according to the wearer's usage habits. When the wear mode is entered, only the set needs to be closed. application.
  • the wearing detection device of the smart watch further includes:
  • the repeating unit 60 is configured to repeatedly detect whether the smart watch is worn according to the specified interval, and enter the smart watch into the corresponding wearing mode or the non-wearing mode according to the detection result.
  • the first acquisition determining unit 10 includes:
  • the first meter acquisition module 11 is configured to continuously obtain the light intensity value of the environment where the back of the smart watch is located in the first designated day. Only when the light intensity value is stable can it be used as a usable data. For example, when the smart watch is not worn, other obstructions are blocked on the back of the smart watch. The light intensity value obtained is generally not available and needs to be filtered. Drop to improve the accuracy of the judgment.
  • the foregoing second obtaining determining unit 20 includes:
  • the second meter acquisition module 21 is configured to obtain a distance value between the back of the smart watch and the nearest obstacle for the second specified time. Only when the distance value is stable can it be used as a usable data. For example, when the smart watch is not worn, other obstructions are short-sleeved on the back of the smart watch. The distance value obtained by this is generally not available and needs to be filtered out. To improve the accuracy of the judgment.
  • the use process of the wearing detection device of the smart watch includes:
  • S101 Acquire a light intensity value of an environment where the back of the smart watch is located for the first designated time;
  • S102 comparing the light intensity value with a preset light intensity threshold, whether the light intensity value is greater than the light intensity threshold; if the light intensity value is greater than the light intensity threshold, determining that the smart watch does not meet the wearing condition, entering Step S103; if the light intensity value is less than or equal to the light intensity threshold, then initially determine that the smart watch meets the wearing condition, proceeds to step S104;
  • S105 comparing the distance value with a preset distance threshold, whether the distance value is greater than the distance threshold; if the distance value is greater than the distance threshold, determining that the smart watch does not satisfy the wearing condition, proceeding to step S103; Less than or equal to the distance threshold,
  • step S106 determining that the smart watch meets the wearing condition
  • the use process of the wearing detection device of the smart watch includes:
  • S201 Obtain a distance value between the back of the smart watch and the nearest obstacle for the second designated time
  • S202 comparing the distance value with a distance threshold of the preset value, whether the distance value is greater than the distance threshold; if the distance value is greater than the distance threshold, determining that the smart watch does not satisfy the wearing condition, proceeding to step S203; If it is less than or equal to the distance threshold, it is determined that the smart watch satisfies the wearing condition, and proceeds to step S204;
  • Step S205 Compare the light intensity value with a preset light intensity threshold, whether the light intensity value is greater than the light intensity threshold; if the light intensity value is greater than the light intensity threshold, determine that the smart watch does not meet the wearing condition, and enter Step S203; if the light intensity value is less than or equal to the light intensity threshold, it is determined that the smart watch meets the wearing condition, proceeds to step S206;
  • the use process of the wearing detection device of the smart watch includes: [0143] S301, obtaining the light intensity value of the environment where the back of the smart watch is located for the first designated day, and continuing the first Obtain the distance between the back of the smart watch and the nearest obstacle in the second day;
  • S302 comparing the light intensity value with a preset light intensity threshold, and comparing the distance value with a preset distance threshold;
  • step S303 if the light intensity value is greater than the light intensity threshold, and/or, if the distance value is greater than the distance threshold, determining that the smart watch does not meet the wearing condition, the smart watch enters the non-wearing mode, and then proceeds to step S305;
  • S304 if the light intensity value is less than or equal to the light intensity threshold, and if the distance value is less than or equal to the distance threshold, determining that the smart watch meets the wearing condition, enters the wearing mode, and then proceeds to step 305;
  • the wearing detection device of the smart watch of the present invention detects the light intensity of the environment in which the back of the smart watch is located, and detects the distance between the back of the smart watch and the nearest obstacle, and then respectively compares with the preset threshold, and finally judges according to the comparison result. Whether the smart watch is worn or not, whether the smart watch is worn by detecting the light intensity and the distance condition can improve the detection accuracy, improve the use efficiency of the smart watch, and effectively save energy consumption.

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Abstract

L'invention concerne un procédé de détection de port de montre intelligente, comprenant : S10, la mesure, après le démarrage d'une montre intelligente pendant un premier temps préétabli, d'une distance entre la montre intelligente et un obstacle extérieur au moyen d'un module de mesure infrarouge (10) ; S20, si la distance entre la montre intelligente et l'obstacle extérieur est inférieure ou égale à une distance préétablie, la mesure de la température de l'obstacle extérieur au moyen d'un module de mesure de température (20) ; et S30, si la température de l'obstacle extérieur s'inscrit dans une plage de températures préétablie, la détermination du fait que la montre intelligente est portée. Une montre intelligente et un dispositif de détection de port de montre intelligente garantissent la précision de la détection du port de la montre intelligente au moyen de la double mesure de la distance et de la température ou de la double mesure de l'intensité lumineuse et de la distance, ce qui permet de réduire le taux de détection de port erroné.
PCT/CN2015/099802 2015-12-30 2015-12-30 Procédé et dispositif de détection de port de montre intelligente, et montre intelligente WO2017113159A1 (fr)

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CN105167761A (zh) * 2015-09-22 2015-12-23 深圳市元征科技股份有限公司 智能穿戴设备佩戴状态检测方法及装置
CN105467825A (zh) * 2015-12-30 2016-04-06 深圳市鼎芯东方科技有限公司 智能手表佩戴检测方法和智能手表

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