WO2017156767A1 - 移动终端及其智能闹钟的实现方法、装置 - Google Patents
移动终端及其智能闹钟的实现方法、装置 Download PDFInfo
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- WO2017156767A1 WO2017156767A1 PCT/CN2016/076722 CN2016076722W WO2017156767A1 WO 2017156767 A1 WO2017156767 A1 WO 2017156767A1 CN 2016076722 W CN2016076722 W CN 2016076722W WO 2017156767 A1 WO2017156767 A1 WO 2017156767A1
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- awake state
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
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- G—PHYSICS
- G04—HOROLOGY
- G04C—ELECTROMECHANICAL CLOCKS OR WATCHES
- G04C21/00—Producing acoustic time signals by electrical means
- G04C21/16—Producing acoustic time signals by electrical means producing the signals at adjustable fixed times
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- the invention relates to the field of intelligent alarm clocks, and in particular to a method and a device for implementing a mobile terminal and a smart alarm clock thereof.
- the user Normally, after the alarm starts to sound, the user needs to turn off the alarm by sliding the display screen of the mobile terminal or touching a button on the mobile terminal. If the user is still in a confused state at this time, it is likely that the operation specified by turning off the alarm cannot be performed accurately because the eyes are not fully opened, and the alarm is always audible, causing others, especially others in the collective dormitory. influences.
- the alarm clock may be the second time. When it rings, it interferes with other people again, or, because the alarm is not selected, it continues to sound and overslept.
- the existing implementation method of the smart alarm clock applied to the mobile terminal has a problem of low utility rate, resulting in a narrow application scenario of the smart alarm clock.
- an object of the present invention is to provide a method for implementing a smart alarm clock capable of improving the utility rate of a smart alarm clock.
- another object of the present invention is to provide an apparatus and a mobile terminal for implementing a smart alarm clock capable of improving the utility rate of a smart alarm clock.
- a method for implementing a smart alarm clock which is applied to a mobile terminal, includes: when an abnormal alarm time reaches a preset alarm time, intercepting an alarm shutdown command to turn off the alarm by responding to the alarm shutdown command; Whether it is awake; if not, delays the user according to the preset delay time.
- the intercepting obtains an alarm off command to close the alarm by responding to the alarm off command, the method further comprising: detecting a position status of the mobile terminal; and repeating the number of positions according to the detected position And determining, by the first comparison result of the first preset threshold, whether the alarm needs to be turned off; if yes, generating the alarm off command.
- determining whether the user is in the awake state comprises: performing light intensity detection on the environment in which the user is located, to determine the awake state of the user according to the relationship curve between the pre-stored awake degree and the light intensity.
- the determining whether the user is in the awake state comprises: comparing the awake state of the display screen of the mobile terminal with a second preset threshold in a time interval between two adjacent preset sounding times, The user's awake state is determined based on the second comparison result.
- the method further includes: when the time interval indicated by the smart alarm clock and the preset sleep time does not exceed a third preset threshold, the awake state of the display screen of the mobile terminal and the second pre- The threshold is compared to determine the awake state of the user according to the second comparison result; if it is determined that the user is in the awake state, the user is reminded according to the preset sleep time.
- a device for implementing a smart alarm clock comprising: a command listening module, configured to listen to an alarm off command when a preset alarm time is reached at a time indicated by the smart alarm, to turn off the alarm by responding to the alarm off command;
- the awake state judging module is configured to determine whether the user is in the awake state; if not, the delay alarm module is notified; and the delay alarm module is configured to delay the user according to the preset delay time.
- the device further includes: a position status detecting module, configured to detect a position status of the mobile terminal; and a first comparing module, configured to repeat the position status according to the detected position And determining, by the first comparison result of the first preset threshold, whether the alarm needs to be turned off; if yes, notifying the instruction generating module; and the command generating module is configured to generate the alarm closing command.
- a position status detecting module configured to detect a position status of the mobile terminal
- a first comparing module configured to repeat the position status according to the detected position And determining, by the first comparison result of the first preset threshold, whether the alarm needs to be turned off; if yes, notifying the instruction generating module; and the command generating module is configured to generate the alarm closing command.
- the awake state determining module includes: a light intensity detecting unit configured to perform light intensity detection on the environment in which the user is located, to determine the awake state of the user according to the relationship curve between the pre-stored awake degree and the light intensity.
- the awake state determining module includes: a comparing unit, configured to: awake state of the display screen of the mobile terminal and a second preset threshold in a time interval between two adjacent preset sounding times For comparison, the user's awake state is judged based on the second comparison result.
- the device further includes: a second comparing module, configured to display a display screen of the mobile terminal when a time interval indicated by the smart alarm clock and a preset sleep time does not exceed a third preset threshold The awake state is compared with the second preset threshold to determine the awake state of the user according to the second comparison result.
- the reminding module is configured to notify the user according to the preset sleep time if the user is determined to be in the awake state.
- a mobile terminal comprising a memory and a processor
- the memory is configured to store program instructions corresponding to the smart alarm clock
- the processor performs the following steps by using the program instructions stored in the memory: in the smart alarm clock
- the listener obtains an alarm off command to turn off the alarm by responding to the alarm off command; determine whether the user is in the awake state; if not, the user is performed according to the preset delay time. Delayed noise.
- the present invention has the following beneficial effects:
- the alarm When the preset alarm time is reached at the time indicated by the smart alarm clock, the alarm is turned off according to the alarm off command, and after the alarm is turned off, the user's awake state is further judged, and if the user is in an awake state, the preset delay is performed. Time delays the user. That is to say, if the user is in the awake state, the alarm will not be delayed after the alarm is turned off, thereby preventing the unconscious user from delaying the business and avoiding the second alarm to the awake user. Others, in turn, have increased the practical rate of smart alarm clocks, and at the same time effectively expanded the application scenario of smart alarm clocks.
- FIG. 1 is a flow chart of a method for implementing a smart alarm clock according to an embodiment
- FIG. 2 is a flowchart of a method for implementing a smart alarm clock according to another embodiment
- FIG. 3 is a flowchart of a method for implementing a smart alarm clock according to another embodiment
- FIG. 4 is a structural block diagram of an apparatus for implementing a smart alarm clock according to an embodiment
- FIG. 5 is a structural block diagram of an apparatus for implementing a smart alarm clock according to another embodiment
- FIG. 6 is a structural block diagram of an apparatus for implementing a smart alarm clock according to another embodiment
- FIG. 7 is a schematic structural diagram of hardware of a mobile terminal according to various embodiments of the present invention.
- Figure 8 is a graph showing the relationship between the degree of waking and the intensity of light in the present invention.
- a method for implementing a smart alarm clock is applied to a mobile terminal, and the mobile terminal may be a smart phone, a tablet computer, or a computer.
- the mobile terminal may be a smart phone, a tablet computer, or a computer.
- various embodiments of the present invention will be described in detail below by taking a mobile terminal as a smart phone and a display screen and a button on the smart phone as an example.
- the method as described above includes the following steps:
- Step 110 When the preset alarm time is reached at the time indicated by the smart alarm, the alarm is given an alarm off command to turn off the alarm by responding to the alarm off command.
- the preset alarm time is the time point set by the user to remind himself that something needs to be done.
- the preset alarm time can be 8 am to remind the user to get up.
- the smart alarm When the user reaches the preset alarm time at the time indicated by the smart alarm, the smart alarm will be instructed to turn off the alarm by a specified operation.
- the specified operation may be a virtual button on the display screen of the sliding mobile terminal, or touching a physical button on the mobile terminal, or even a voice input operation through the microphone interface of the mobile terminal.
- the smart alarm will listen to the alarm off command, and then turn off the alarm by responding to the alarm off command.
- step 130 it is determined whether the user is in an awake state.
- the awake state refers to the user's ability to accurately perform the operation specified by turning off the alarm. If the user is awake, there is no need to delay the user's delay, so as not to cause a second interference to others. Based on this, after the alarm is turned off, whether the smart alarm is delayed by the alarm setting to delay the user will depend on the user's awake state.
- the waking state of the user is determined by step 130. If it is determined that the user is in the awake state, the process proceeds to step 170, and the user is delayed to make a delay. Otherwise, if it is determined that the user is not awake, the process proceeds to the step. 150, continue to delay the user.
- step 150 the user is delayed in accordance with the preset delay time.
- the preset delay time is different from the preset alarm time. It is not the time point, but the time period set by the user to remind yourself that you need to complete something. For example, if the preset delay time is 5 minutes, the smart alarm will perform the step 150, and the closed 8 o'clock alarm will be delayed until 8:05, and then alarm again to remind the user to wake up again.
- 8 o'clock and 8 o'clock 5 are the preset alarm time, that is, after performing the step 150 to delay the user according to the preset delay time, the process returns to step 110 to wait for the smart alarm clock. The indicated time reaches the delayed preset alarm time.
- Step 170 suspending the user to delay the alarm.
- the user does not delay the business because the delay is not continued, and does not affect other people because of excessive delays, thereby improving the smart alarm clock.
- step 110 the method as described above further includes the following steps:
- Step 210 Detect a location status of the mobile terminal.
- the position state of the mobile terminal will be detected through step 210 to prevent the alarm clock from being screamed all the time.
- the positional state of the mobile terminal refers to the sway caused by the mobile terminal leaving the original position. Simply put, after the alarm is stunned, if the mobile terminal leaves the original position and shakes, indicating that the user may want to turn off the alarm, by detecting the position status of the mobile terminal, the smart alarm can be intercepted to obtain an alarm clock. Close the command.
- the detecting process is: the mobile terminal detects the position state of the mobile terminal by using its own gyro sensor.
- the corresponding gravity test value of the mobile terminal will change, that is, different gravity test values represent different position states of the mobile terminal.
- Step 230 Determine whether it is necessary to turn off the alarm according to the first comparison result of the detected number of repetitions of the position state and the first preset threshold. If yes, proceed to step 250 to generate an alarm off command to turn off the alarm; otherwise, return to step 230 to continue to determine if the alarm needs to be turned off.
- the number of repetitions of the position state is compared with the first preset threshold. Only when the first comparison result indicates that the number of repetitions is not lower than the first preset threshold, it can be determined that the alarm needs to be closed.
- the first preset threshold is 3. If the gyro sensor detects that the corresponding gravity test value of the mobile terminal is in the same gravity test value interval, the number of times is 4, indicating the location status of the mobile terminal. The number of repetitions has exceeded the first preset threshold, thereby indicating that the user wants to complete some of the same actions. At this time, the smart alarm determines that the user is performing the operation specified by the alarm when the alarm is ignited, so the process proceeds to step 250. .
- step 250 an alarm off command is generated.
- the user only needs to repeat an action, so that the number of repetitions of the position state of the mobile terminal exceeds the first preset threshold, the alarm can be turned off, so that even if the user cannot accurately perform the operation specified by turning off the alarm.
- the alarm clock will not always sound, not only simplifying the user's operation, but also avoiding the alarm of the alarm clock for a long time and causing interference to other people, further improving the practical rate of the smart alarm clock and expanding the application scenario of the smart alarm clock.
- step 130 includes the following steps:
- the light intensity detection is performed on the environment in which the user is located, and the user's awake state is judged according to the relationship between the pre-stored awake degree and the light intensity.
- melatonin can regulate the sleep phase, and the secretion of melatonin is closely related to the light intensity. Simply put, the stronger the light intensity, the stronger the secretion of melatonin is suppressed, that is, the stronger the light intensity, the fade The stronger the inhibition of melanin, the higher the level of wakingness of the user.
- the degree of waking will be expressed by the sensitivity of the inhibition rate of melatonin to the spectrum.
- the ordinate indicates the value corresponding to the degree of awake, that is, the sensitivity of the inhibition rate of melatonin to the spectrum
- the abscissa indicates the value corresponding to the intensity of the light, that is, the wavelength of the light wave.
- the value of the abscissa corresponding to the peak value of the curve in Fig. 8 corresponds to the approximate value of the blue light wavelength at the time of the strongest light intensity at noon, and the corresponding ordinate value corresponding to the inhibition rate of melatonin is also the highest. That means melatonin has the strongest inhibitory effect and the user has the highest degree of sobriety.
- the awake state of the user is determined by the relationship between the stored awake degree and the light intensity.
- the mobile terminal will detect the light intensity of the environment in which the user is located through its own light sensor, which is easy to understand, and the value corresponding to the light intensity in the daytime is greater than the value corresponding to the light intensity in the night, then the daytime The value corresponding to the awake degree is also greater than the middle clearing The value corresponding to the degree of waking.
- the degree of waking can be obtained corresponding to the detected light intensity, and further whether the user is in the awake state can be determined according to the degree of waking.
- the awake state of the user is determined by comparing the value corresponding to the awake degree with the awake threshold. That is to say, if the value corresponding to the awake degree is less than the awake threshold, it is determined that the user is in the non-awake state, and conversely, if it is greater than or equal to the awake threshold, it is determined that the user is in the awake state. For example, a value corresponding to the degree of alertness corresponding to the light intensity at 8 o'clock in the morning may be set as the awake threshold.
- step 130 includes the following steps:
- the awake state of the display screen of the mobile terminal is compared with the second preset threshold in a time interval of two adjacent preset alarm times to determine the awake state of the user according to the second comparison result.
- the awake state of the display screen of the mobile terminal includes: a time frequency at which the display screen interval is lit, a length of time during which the display screen is continuously lit, a time interval between the last display screen lighting time and the preset alarm time. At least one of them.
- the display screen interval is lit frequently during the interval between two preset abnormal time, or the display screen is continuously lit for a long time, or the time when the last display screen is lit is
- the preset time interval of the alarm time is very short, which indicates that the user is in the awake state during the time period. At this time, the user may be awake because the previous alarm alarm is awake, and it is not necessary to perform the user once again.
- the alarm clock is noisy, thus avoiding the influence on others, effectively improving the practical rate of the smart alarm clock, and expanding the application scenario of the smart alarm clock.
- the second comparison result of the two can be used to determine the awake state of the user.
- the second preset threshold is 5 minutes, and if the display screen is continuously lit for more than 5 minutes, it is determined that the user is in the awake state.
- the awake state of the display screen of the mobile terminal is compared with the second preset threshold multiple times.
- the second preset threshold is 5 minutes, and if the display screen is continuously lit for more than 5 minutes, and the time interval between the last display screen lighting time and the preset alarm time is less than 5 minutes, the user is judged. Being awake.
- the method as described above further includes the following steps:
- Step 310 When the time interval indicated by the smart alarm clock and the preset sleep time does not exceed the third preset threshold, compare the awake state of the display screen of the mobile terminal with the second preset threshold, according to the second comparison. As a result, the user's awake state is judged.
- the preset sleep time may be set by the user, or may be obtained by the cloud server according to the relevant information of the user and recommended to the mobile terminal.
- the relevant information includes height, weight, age, occupation type, preset noise time (specifically, the preset noise time when getting up), expected sleep time, and the like.
- the smart alarm clock and the preset sleep time if the time interval indicated by the smart alarm clock and the preset sleep time does not exceed the third preset threshold, it indicates that the current time is close to the preset sleep time. At this time, if the user is still in the awake state, for example, If the user is using the mobile phone and is likely to forget the sleeping time, the smart alarm will remind the user to ensure that the user can sleep in time, thereby ensuring that the user's sleep time can be consistent with the relevant information. For example, children under the age of 6 need to have a minimum of 10 hours of sleep.
- the awake state of the user will be judged according to the awake state of the display screen of the mobile terminal.
- the awake state of the display screen of the mobile terminal includes: a time frequency at which the display screen interval is lit, a length of time during which the display screen is continuously lit, a time interval between the last display screen lighting time and the preset nuisance time. .
- the specific judgment rule is similar to the foregoing embodiment, and will not be further described herein.
- Step 330 If it is determined that the user is in the awake state, the user is reminded according to the preset sleep time.
- the user has entered a sleep state. The user is not required to be reminded, thereby further improving the practical rate of the smart alarm clock, and effectively expanding the application scenario of the smart alarm clock.
- an implementation apparatus for a smart alarm clock includes:
- the command listening module 410 is configured to listen to an alarm off command when the preset alarm time reaches the time indicated by the smart alarm, to turn off the alarm by responding to the alarm off command.
- the awake state determining module 430 is configured to determine whether the user is in an awake state. If not, the delay alarm module 450 is notified; if so, the pause alarm module 470 is notified.
- the delay alarm module 450 is configured to delay the user according to the preset delay time.
- the alarm module 470 is suspended for suspending the delay of the user.
- the apparatus as described above further includes:
- the location status detecting module 510 is configured to detect a location status of the mobile terminal.
- the first comparison module 530 is configured to determine whether it is necessary to turn off the alarm according to the first comparison result of the number of repetitions of the detected position state and the first preset threshold. If yes, the instruction generation module 550 is notified, otherwise returning to step 530 to continue to determine whether the alarm needs to be turned off.
- the instruction generation module 550 is configured to generate an alarm off command.
- the awake state determination module 430 includes:
- the light intensity detecting unit is configured to perform light intensity detection on the environment in which the user is located, and determine the awake state of the user according to the relationship curve between the pre-stored awake degree and the light intensity.
- the awake state determining module 430 includes:
- a comparing unit configured to compare the awake state of the display screen of the mobile terminal with the second preset threshold during a time interval of two adjacent preset alarm times, to determine the awake state of the user according to the second comparison result .
- the device as described above further includes:
- the second comparison module 610 is configured to compare the awake state of the display screen of the mobile terminal with the second preset threshold when the time interval indicated by the smart alarm clock and the preset sleep time does not exceed the third preset threshold. The user's awake state is determined based on the second comparison result.
- the reminding module 630 is configured to prompt the user according to the preset sleep time if it is determined that the user is in the awake state.
- FIG. 7 is a schematic structural diagram of hardware of a mobile terminal according to various embodiments of the present invention.
- the mobile terminal 700 includes a memory 710, a processor 730, a communication bus 770 for connecting the memory 710 and the processor 730, and a communication interface 750 connected to the communication bus 770.
- the memory 710 is configured to store program instructions corresponding to the smart alarm.
- the processor 730 performs the following steps through the program instructions stored in the memory 710: when the preset alarm time is reached at the time indicated by the smart alarm, the alarm is given an alarm off command to turn off the alarm by responding to the alarm off command. Determine whether the user is awake; if not, delay the user according to the preset delay time.
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Abstract
本发明公开了一种移动终端及其智能闹钟的实现方法、装置,其中,所述智能闹钟的实现方法包括:在智能闹钟所指示的时间到达预设闹响时间时,侦听得到闹钟关闭指令,以通过响应所述闹钟关闭指令关闭闹钟;判断用户是否处于清醒状态;若为否,则按照预设延迟时间对用户进行延迟闹响。本发明的移动终端及其智能闹钟的实现方法、装置可以提高智能闹钟的实用率,扩大智能闹钟的应用场景。
Description
本发明涉及智能闹钟领域,尤其涉及一种移动终端及其智能闹钟的实现方法、装置。
随着移动终端的广泛使用,应用于移动终端的智能闹钟也逐渐替代了常规闹钟。人们往往通过对移动终端上的智能闹钟进行设定来提醒自己需要完成某件事情。例如,起床,开会,生日提醒等等。
通常情况下,闹钟在开始闹响后,需要用户通过滑动移动终端的显示屏幕或者触摸移动终端上的某个按键才能关闭闹钟。如果用户此时仍处于迷糊状态,很可能因为眼睛尚未完全睁开而造成不能准确地执行关闭闹钟所指定的操作,进而导致闹钟一直闹响,给其他人,尤其是集体宿舍中的其他人造成影响。
此外,现实生活中,很多用户习惯在闹钟第一次闹响之后仍需要闹钟继续闹响,例如,起床的时候,人们都喜欢关闭闹钟后再继续睡一会,则可能在闹钟第二次闹响的时候再次干扰到其他人,又或者,因为未选择闹钟继续闹响而睡过了头。
因此,现有的应用于移动终端的智能闹钟的实现方法还存在实用率较低的问题,导致了智能闹钟的应用场景较窄。
发明内容
基于此,本发明的一个目的在于提供一种能够提高智能闹钟实用率的智能闹钟的实现方法。
此外,本发明的另一个目的在于提供一种能够提高智能闹钟实用率的智能闹钟的实现装置、移动终端。
为了解决上述技术问题,本发明采用的技术方案如下:
一种智能闹钟的实现方法,应用于移动终端,包括:在智能闹钟所指示的时间到达预设闹响时间时,侦听得到闹钟关闭指令,以通过响应所述闹钟关闭指令关闭闹钟;判断用户是否处于清醒状态;若为否,则按照预设延迟时间对用户进行延迟闹响。
进一步地,所述侦听得到闹钟关闭指令,以通过响应所述闹钟关闭指令关闭闹钟之前,所述方法还包括:对所述移动终端的位置状态进行检测;根据检测到的位置状态的重复次数与第一预设阈值的第一比较结果,判断是否需要关闭闹钟;若为是,则生成所述闹钟关闭指令。
进一步地,所述判断用户是否处于清醒状态包括:对用户所处的环境进行光线强度检测,以根据预存的清醒程度与光线强度的关系曲线对用户的清醒状态进行判断。
进一步地,所述判断用户是否处于清醒状态包括:在相邻两个所述预设闹响时间的时间间隔内,将所述移动终端的显示屏幕的唤醒状态与第二预设阈值比较,以根据第二比较结果对用户的清醒状态进行判断。
进一步地,所述方法还包括:在所述智能闹钟所指示的时间与预设睡眠时间的时间间隔不超过第三预设阈值时,对所述移动终端的显示屏幕的唤醒状态与第二预设阈值进行比较,以根据第二比较结果判断用户的清醒状态;若判断得到用户处于清醒状态,则按照所述预设睡眠时间对用户进行提醒。
一种智能闹钟实现的装置,包括:指令侦听模块,用于在智能闹钟所指示的时间到达预设闹响时间时,侦听得到闹钟关闭指令,以通过响应所述闹钟关闭指令关闭闹钟;清醒状态判断模块,用于判断用户是否处于清醒状态;若为否,则通知延迟闹响模块;所述延迟闹响模块,用于按照预设延迟时间对用户进行延迟闹响。
进一步地,所述装置还包括:位置状态检测模块,用于对所述移动终端的位置状态进行检测;第一比较模块,用于根据检测到的位置状态的重复次
数与第一预设阈值的第一比较结果,判断是否需要关闭闹钟;若为是,则通知指令生成模块;所述指令生成模块,用于生成所述闹钟关闭指令。
进一步地,所述清醒状态判断模块包括:光线强度检测单元,用于对用户所处的环境进行光线强度检测,以根据预存的清醒程度与光线强度的关系曲线对用户的清醒状态进行判断。
进一步地,所述清醒状态判断模块包括:比较单元,用于在相邻两个所述预设闹响时间的时间间隔内,将所述移动终端的显示屏幕的唤醒状态与第二预设阈值比较,以根据第二比较结果对用户的清醒状态进行判断。
进一步地,所述装置还包括:第二比较模块,用于在所述智能闹钟所指示的时间与预设睡眠时间的时间间隔不超过第三预设阈值时,对所述移动终端的显示屏幕的唤醒状态与第二预设阈值进行比较,以根据第二比较结果判断用户的清醒状态;提醒模块,用于若判断得到用户处于清醒状态,则按照所述预设睡眠时间对用户进行提醒。
一种移动终端,所述移动终端包括存储器和处理器,所述存储器用于存储实现智能闹钟所对应的程序指令,所述处理器通过所述存储器中存储的程序指令执行以下步骤:在智能闹钟所指示的时间到达预设闹响时间时,侦听得到闹钟关闭指令,以通过响应所述闹钟关闭指令关闭闹钟;判断用户是否处于清醒状态;若为否,则按照预设延迟时间对用户进行延迟闹响。
与现有技术相比,本发明具有以下有益效果:
通过在智能闹钟所指示的时间到达预设闹响时间时,根据闹钟关闭指令关闭闹钟,在闹钟关闭之后,进一步地对用户的清醒状态进行判断,若用户处于未清醒状态,则按照预设延迟时间对用户进行延迟闹响。也就是说,如果用户处于清醒状态,则闹钟关闭之后就不再进行延迟闹响,从而既可以避免未清醒的用户耽误了正事,还可以避免对清醒的用户进行第二次闹响而干扰到其他人,进而提高了智能闹钟的实用率,同时有效地扩大了智能闹钟的应用场景。
图1为一实施例的智能闹钟的实现方法的流程图;
图2为另一实施例的智能闹钟的实现方法的流程图;
图3为另一实施例的智能闹钟的实现方法的流程图;
图4为一实施例的智能闹钟的实现装置的结构框图;
图5为另一实施例的智能闹钟的实现装置的结构框图;
图6为另一实施例的智能闹钟的实现装置的结构框图;
图7为本发明各实施例中移动终端的硬件结构示意图;
图8为本发明中清醒程度与光线强度的关系曲线。
为了使本发明的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本发明进行进一步的详细说明。应当理解,此处所描述的具体实施例仅用以解释本发明,并不用于限定本发明。
请参阅图1,在一实施例中,一种智能闹钟的实现方法,应用于移动终端,该移动终端可以是智能手机,也可以是平板电脑,还可以是计算机等。下面以移动终端为智能手机,智能手机上设有显示屏幕和按键为例,对本发明各实施例加以详细地说明如下。
如上所述的方法包括以下步骤:
步骤110,在智能闹钟所指示的时间到达预设闹响时间时,侦听得到闹钟关闭指令,以通过响应闹钟关闭指令关闭闹钟。
预设闹响时间是用户设定的时间点来提醒自己需要完成某件事情。例如,预设闹响时间可以是早上8点,来提醒用户起床。
用户在智能闹钟所指示的时间到达预设闹响时间时,将通过指定的操作来指示智能闹钟进行闹钟的关闭。例如,该指定的操作可以是滑动移动终端的显示屏幕上的某个虚拟按键,或者触摸移动终端上的某个实体按键,甚至是通过移动终端的麦克风接口进行的语音输入操作等。
由此,在用户执行关闭闹钟所指定的操作时,智能闹钟将侦听得到闹钟关闭指令,进而通过响应闹钟关闭指令来对闹响的闹钟进行关闭。
步骤130,判断用户是否处于清醒状态。
本实施例中,清醒状态指的是用户能够准确地执行关闭闹钟所指定的操作。若用户处于清醒状态,则不必对用户继续进行延迟闹响,以此不会给其他人造成第二次干扰。基于此,在闹钟关闭之后,智能闹钟是否进行闹钟的延迟闹响设置来对用户进行延迟闹响将取决于用户的清醒状态。
也就是说,通过步骤130对用户的清醒状态进行判断,若判断到用户处于清醒状态,则进入步骤170,暂停对用户进行延迟闹响,反之,若判断到用户处于非清醒状态,则进入步骤150,对用户继续进行延迟闹响。
步骤150,按照预设延迟时间对用户进行延迟闹响。
预设延迟时间不同于预设闹响时间,其不是时间点,而是用户设定的时间段,来再次提醒自己需要完成某件事情。例如,预设延迟时间为5分钟,则智能闹钟通过执行步骤150,关闭的8点闹钟将延迟至8点零5分的时候再次闹响,以再次提醒用户起床。
值得一提的是,8点与8点零5均为预设闹响时间,也就是说,在执行步骤150按照预设延迟时间对用户进行延迟闹响之后,将返回步骤110等待智能闹钟所指示的时间到达延迟了的预设闹响时间。
步骤170,暂停对用户进行延迟闹响。
通过如上所述的方法,用户既不会因为未继续进行延迟闹响耽误了正事,也不会因为进行了多余的延迟闹响而影响到其他人,进而提高了智能闹钟的
实用率,并有效地扩大了智能闹钟的应用场景。
请参阅图2,在一实施例中,步骤110之前,如上所述的方法还包括以下步骤:
步骤210,对移动终端的位置状态进行检测。
如前所述,如果用户不能准确地执行关闭闹钟所指定的操作,闹钟将一直闹响,这会给其他人,尤其是集体宿舍中的其他人造成影响。因此,本实施例中,将通过步骤210对移动终端的位置状态进行检测,来避免闹钟一直闹响。
所谓移动终端的位置状态指的是移动终端离开原来的位置而产生的晃动情况。简单地说,闹钟闹响之后,如果移动终端离开原来的位置而产生了晃动,表明用户可能想对闹钟进行关闭,则通过对移动终端的位置状态进行检测,将使得智能闹钟能够侦听得到闹钟关闭指令。
具体地检测过程为:移动终端利用其自带的陀螺仪传感器对移动终端的位置状态进行检测。当移动终端离开原来的位置而产生了晃动,则移动终端相应的重力测试值将会发生变化,即不同的重力测试值代表了移动终端不同的位置状态。
步骤230,根据检测到的位置状态的重复次数与第一预设阈值的第一比较结果,判断是否需要关闭闹钟。若为是,则进入步骤250,生成闹钟关闭指令,以关闭闹钟,否则,返回步骤230继续判断是否需要关闭闹钟。
由于移动终端离开原来的位置既有可能是因为用户想对闹钟进行关闭,也有可能是用户不小心碰到了移动终端,还有可能是用户对移动终端进行了其他操作,因此,需要将检测到的位置状态的重复次数与第一预设阈值进行比较,只有在第一比较结果表明重复次数不低于第一预设阈值时,才能判断得到闹钟需要关闭。
例如,第一预设阈值为3,如果陀螺仪传感器检测到移动终端相应的重力测试值处于同一重力测试值区间的次数为4,则表明移动终端的位置状态
的重复次数已超过了第一预设阈值,进而说明用户想完成某种相同的动作,此时,智能闹钟在闹钟闹响时,判定用户进行的是闹钟关闭所指定的操作,因此进入步骤250。
步骤250,生成闹钟关闭指令。
通过如上所述的方法,用户只需要重复某个动作,使得移动终端的位置状态的重复次数超过第一预设阈值,即可关闭闹钟,进而使得即便用户不能准确地执行关闭闹钟所指定的操作,闹钟也不会一直闹响,不仅简化了用户的操作,同时避免了闹钟长时间闹响而对其他人产生干扰,进一步提高了智能闹钟的实用率,扩大了智能闹钟的应用场景。
在一实施例中,步骤130包括以下步骤:
对用户所处的环境进行光线强度检测,以根据预存的清醒程度与光线强度的关系曲线对用户的清醒状态进行判断。
众所周知,褪黑素能够调节睡眠时相,而褪黑素的分泌与光线强度密切相关,简单地说,光线强度越强,褪黑素的分泌被抑制得越厉害,即光线强度越强,褪黑素的抑制作用越强,用户的清醒程度将越高。
基于此,本实施例中,清醒程度将通过褪黑素的抑制率相对于光谱的灵敏度来表示。如图8所示,纵坐标表示清醒程度对应的数值,即褪黑素的抑制率相对于光谱的灵敏度,横坐标表示光线强度对应的数值,即光波波长。图8中的曲线峰值所对应的横坐标的值相当于正午时刻光线强度最强时蓝光波长的大致值,此时其所对应的纵坐标的值相当于褪黑素的抑制率的灵敏度也是最高的,即表示褪黑素的抑制作用最强,用户的清醒程度最高。进而,移动终端中将通过存储的清醒程度与光线强度的关系曲线来对用户的清醒状态进行判断。
具体检测过程:移动终端中将通过其自带的光传感器对用户所处的环境的光线强度进行检测,容易理解,白天中光线强度所对应的数值大于夜晚中光线强度所对应的数值,则白天中清醒程度所对应的数值也要大于夜晚中清
醒程度所对应的数值。
因此,在检测到用户所处的环境的光线强度之后,根据预存的关系曲线,即能够得到与检测到的光线强度具有对应关系的清醒程度,进而根据该清醒程度判断出用户是否处于清醒状态。
进一步地,本实施例中,用户的清醒状态将通过清醒程度所对应的数值与清醒阈值的比较结果来进行判断。也就是说,清醒程度所对应的数值如果小于清醒阈值,则判断用户处于非清醒状态,反之,如果大于或者等于清醒阈值,则判断用户处于清醒状态。例如,可以将与早上8点时的光线强度具有对应关系的清醒程度所对应的数值设为清醒阈值。
进一步地,在另一实施例中,步骤130包括以下步骤:
在相邻两个预设闹响时间的时间间隔内,将移动终端的显示屏幕的唤醒状态与第二预设阈值比较,以根据第二比较结果对用户的清醒状态进行判断。
本实施例中,移动终端的显示屏幕的唤醒状态包括:显示屏幕间隔点亮的时间频率、显示屏幕持续点亮的时间长度、最后一次显示屏幕点亮的时间与预设闹响时间的时间间隔中的至少一个。
可以理解,在相邻两个预设闹响时间的时间间隔内,若显示屏幕间隔点亮很频繁,或者,显示屏幕持续点亮的时间很长,或者,最后一次显示屏幕点亮的时间与预设闹响时间的时间间隔很短,都可以说明用户在该时间段内是处于清醒状态的,此时,用户可能因为前一次的闹钟闹响已经清醒了,则没有必要对用户进行后一次的闹钟闹响,从而避免了给其他人造成影响,有效地提高了智能闹钟的实用率,扩大了智能闹钟的应用场景。
进一步地,通过设置第二预设阈值,与移动终端的显示屏幕的唤醒状态进行比较,二者的第二比较结果将能够用于判断用户的清醒状态。例如,第二预设阈值为5分钟,若显示屏幕持续点亮的时间长度超过5分钟,则判断用户处于清醒状态。
当然,在其他实施例中,为了保证用户的清醒状态的判断准确性,可以
对移动终端的显示屏幕的唤醒状态与第二预设阈值进行多次比较。例如,第二预设阈值为5分钟,若显示屏幕持续点亮的时间长度超过5分钟,并且,最后一次显示屏幕点亮的时间与预设闹响时间的时间间隔小于5分钟,则判断用户处于清醒状态。
请参阅图3,在一实施例中,如上所述的方法还包括以下步骤:
步骤310,在智能闹钟所指示的时间与预设睡眠时间的时间间隔不超过第三预设阈值时,对移动终端的显示屏幕的唤醒状态与第二预设阈值进行比较,以根据第二比较结果判断用户的清醒状态。
预设睡眠时间可以由用户自行设定,也可以是由云端服务器根据用户的相关信息进行计算并推荐至移动终端而得到的。其中,相关信息包括身高、体重、年龄、职业类型、预设闹响时间(特指起床时的预设闹响时间)、期望睡眠时间等等。
本实施例中,若智能闹钟所指示的时间与预设睡眠时间的时间间隔不超过第三预设阈值,则表明当前时间已经接近预设睡眠时间,此时,若用户仍处于清醒状态,例如,用户正在使用手机,很可能忘记睡觉时间,则智能闹钟将对用户进行提醒,以保证用户能够及时睡觉,进而保证了用户的睡眠时长能够与其的相关信息相符合。例如,6岁以下的儿童需要保证至少10小时的睡眠时长。
进一步地,用户的清醒状态将根据移动终端的显示屏幕的唤醒状态来判断。如前所述,移动终端的显示屏幕的唤醒状态包括:显示屏幕间隔点亮的时间频率、显示屏幕持续点亮的时间长度、最后一次显示屏幕点亮的时间与预设闹响时间的时间间隔。具体地判断规则与前述实施例类似,在此就不再一一赘述。
步骤330,若判断得到用户处于清醒状态,则按照预设睡眠时间对用户进行提醒。
若判断得到用户处于非清醒状态,则表明用户已进入睡眠状态,此时,
无需对用户进行提醒,以此进一步地提高了智能闹钟的实用率,有效地扩大了智能闹钟的应用场景。
请参阅图4,在一实施例中,一种智能闹钟的实现装置包括:
指令侦听模块410,用于在智能闹钟所指示的时间到达预设闹响时间时,侦听得到闹钟关闭指令,以通过响应闹钟关闭指令关闭闹钟。
清醒状态判断模块430,用于判断用户是否处于清醒状态。若为否,则通知延迟闹响模块450;若为是,则通知暂停闹响模块470。
延迟闹响模块450,用于按照预设延迟时间对用户进行延迟闹响。
暂停闹响模块470,用于暂停对用户进行延迟闹响。
请参阅图5,在一实施例中,如上所述的装置还包括:
位置状态检测模块510,用于对移动终端的位置状态进行检测。
第一比较模块530,用于根据检测到的位置状态的重复次数与第一预设阈值的第一比较结果,判断是否需要关闭闹钟。若为是,则通知指令生成模块550,否则返回步骤530继续判断是否需要关闭闹钟。
指令生成模块550,用于生成闹钟关闭指令。
在一实施例中,清醒状态判断模块430包括:
光线强度检测单元,用于对用户所处的环境进行光线强度检测,以根据预存的清醒程度与光线强度的关系曲线对用户的清醒状态进行判断。
进一步地,在另一实施例中,清醒状态判断模块430包括:
比较单元,用于在相邻两个预设闹响时间的时间间隔内,将移动终端的显示屏幕的唤醒状态与第二预设阈值比较,以根据第二比较结果对用户的清醒状态进行判断。
请参阅图6,如上所述的装置还包括:
第二比较模块610,用于在智能闹钟所指示的时间与预设睡眠时间的时间间隔不超过第三预设阈值时,对移动终端的显示屏幕的唤醒状态与第二预设阈值进行比较,以根据第二比较结果判断用户的清醒状态。
提醒模块630,用于若判断得到用户处于清醒状态,则按照预设睡眠时间对用户进行提醒。
图7为本发明各实施例中移动终端的硬件结构示意图。如图7所示,移动终端700包括存储器710、处理器730、用于连接存储器710和处理器730的通信总线770、以及与通信总线770相连的通信接口750。
其中,存储器710用于存储实现智能闹钟所对应的程序指令。
处理器730通过存储器710中存储的程序指令执行以下步骤:在智能闹钟所指示的时间到达预设闹响时间时,侦听得到闹钟关闭指令,以通过响应闹钟关闭指令关闭闹钟。判断用户是否处于清醒状态;若为否,则按照预设延迟时间对用户进行延迟闹响。
上述内容,仅为本发明的较佳实施例,并非用于限制本发明的实施方案,本领域普通技术人员根据本发明的主要构思和精神,可以十分方便地进行相应的变通或修改,故本发明的保护范围应以权利要求书所要求的保护范围为准。
Claims (11)
- 一种智能闹钟的实现方法,应用于移动终端,其特征在于,包括:在智能闹钟所指示的时间到达预设闹响时间时,侦听得到闹钟关闭指令,以通过响应所述闹钟关闭指令关闭闹钟;判断用户是否处于清醒状态;若为否,则按照预设延迟时间对用户进行延迟闹响。
- 如权利要求1所述的方法,其特征在于,所述侦听得到闹钟关闭指令,以通过响应所述闹钟关闭指令关闭闹钟之前,所述方法还包括:对所述移动终端的位置状态进行检测;根据检测到的位置状态的重复次数与第一预设阈值的第一比较结果,判断是否需要关闭闹钟;若为是,则生成所述闹钟关闭指令。
- 如权利要求1所述的方法,其特征在于,所述判断用户是否处于清醒状态包括:对用户所处的环境进行光线强度检测,以根据预存的清醒程度与光线强度的关系曲线对用户的清醒状态进行判断。
- 如权利要求1所述的方法,其特征在于,所述判断用户是否处于清醒状态包括:在相邻两个所述预设闹响时间的时间间隔内,将所述移动终端的显示屏幕的唤醒状态与第二预设阈值比较,以根据第二比较结果对用户的清醒状态进行判断。
- 如权利要求1所述的方法,其特征在于,所述方法还包括:在所述智能闹钟所指示的时间与预设睡眠时间的时间间隔不超过第三预设阈值时,对所述移动终端的显示屏幕的唤醒状态与第二预设阈值进行比较,以根据第二比较结果判断用户的清醒状态;若判断得到用户处于清醒状态,则按照所述预设睡眠时间对用户进行提醒。
- 一种智能闹钟的实现装置,其特征在于,包括:指令侦听模块,用于在智能闹钟所指示的时间到达预设闹响时间时,侦 听得到闹钟关闭指令,以通过响应所述闹钟关闭指令关闭闹钟;清醒状态判断模块,用于判断用户是否处于清醒状态;若为否,则通知延迟闹响模块;所述延迟闹响模块,用于按照预设延迟时间对用户进行延迟闹响。
- 如权利要求6所述的装置,其特征在于,所述装置还包括:位置状态检测模块,用于对所述移动终端的位置状态进行检测;第一比较模块,用于根据检测到的位置状态的重复次数与第一预设阈值的第一比较结果,判断是否需要关闭闹钟;若为是,则通知指令生成模块;所述指令生成模块,用于生成所述闹钟关闭指令。
- 如权利要求6所述的装置,其特征在于,所述清醒状态判断模块包括:光线强度检测单元,用于对用户所处的环境进行光线强度检测,以根据预存的清醒程度与光线强度的关系曲线对用户的清醒状态进行判断。
- 如权利要求6所述的装置,其特征在于,所述清醒状态判断模块包括:比较单元,用于在相邻两个所述预设闹响时间的时间间隔内,将所述移动终端的显示屏幕的唤醒状态与第二预设阈值比较,以根据第二比较结果对用户的清醒状态进行判断。
- 如权利要求6所述的装置,其特征在于,所述装置还包括:第二比较模块,用于在所述智能闹钟所指示的时间与预设睡眠时间的时间间隔不超过第三预设阈值时,对所述移动终端的显示屏幕的唤醒状态与第二预设阈值进行比较,以根据第二比较结果判断用户的清醒状态;提醒模块,用于若判断得到用户处于清醒状态,则按照所述预设睡眠时间对用户进行提醒。
- 一种移动终端,其特征在于,所述移动终端包括存储器和处理器,所述存储器用于存储实现智能闹钟所对应的程序指令,所述处理器通过所述存储器中存储的程序指令执行以下步骤:在智能闹钟所指示的时间到达预设闹响时间时,侦听得到闹钟关闭指令,以通过响应所述闹钟关闭指令关闭闹钟;判断用户是否处于清醒状态;若为否,则按照预设延迟时间对用户进行延迟闹响。
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