CN107314815A - Ultraviolet intensity monitoring method and system, and mobile terminal - Google Patents

Ultraviolet intensity monitoring method and system, and mobile terminal Download PDF

Info

Publication number
CN107314815A
CN107314815A CN201710677075.7A CN201710677075A CN107314815A CN 107314815 A CN107314815 A CN 107314815A CN 201710677075 A CN201710677075 A CN 201710677075A CN 107314815 A CN107314815 A CN 107314815A
Authority
CN
China
Prior art keywords
intensity
ultraviolet
local
uitraviolet
light
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN201710677075.7A
Other languages
Chinese (zh)
Other versions
CN107314815B (en
Inventor
吴安平
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Guangdong Oppo Mobile Telecommunications Corp Ltd
Original Assignee
Guangdong Oppo Mobile Telecommunications Corp Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Guangdong Oppo Mobile Telecommunications Corp Ltd filed Critical Guangdong Oppo Mobile Telecommunications Corp Ltd
Priority to CN201710677075.7A priority Critical patent/CN107314815B/en
Publication of CN107314815A publication Critical patent/CN107314815A/en
Application granted granted Critical
Publication of CN107314815B publication Critical patent/CN107314815B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • GPHYSICS
    • G01MEASURING; TESTING
    • G01JMEASUREMENT OF INTENSITY, VELOCITY, SPECTRAL CONTENT, POLARISATION, PHASE OR PULSE CHARACTERISTICS OF INFRARED, VISIBLE OR ULTRAVIOLET LIGHT; COLORIMETRY; RADIATION PYROMETRY
    • G01J3/00Spectrometry; Spectrophotometry; Monochromators; Measuring colours
    • G01J3/28Investigating the spectrum
    • G01J3/457Correlation spectrometry, e.g. of the intensity
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/0202Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72403User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality

Landscapes

  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Spectroscopy & Molecular Physics (AREA)
  • Signal Processing (AREA)
  • General Physics & Mathematics (AREA)
  • Human Computer Interaction (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Photometry And Measurement Of Optical Pulse Characteristics (AREA)

Abstract

The present invention relates to a kind of ultraviolet intensity monitoring method and system, and mobile terminal.The ultraviolet intensity monitoring method, applied to ultraviolet intensity monitoring system and is configured with the mobile terminal of the ultraviolet intensity monitoring system, for monitoring uitraviolet intensity local residing for the mobile terminal.The ultraviolet intensity monitoring method includes step:Obtain the light intensity ratio of visible ray and ultraviolet in local solar spectrum;The local visual intensity of detection;And according to the local visual intensity and the light intensity ratio of the visible ray and ultraviolet, calculate local uitraviolet intensity.Above-mentioned ultraviolet intensity monitoring system and method, by obtaining local visual intensity, and local uitraviolet intensity is calculated according to the light intensity ratio of local visible ray and ultraviolet, so as to providing the user more accurate local uitraviolet intensity data, allow users to be properly protected measure according to actual uitraviolet intensity.

Description

Ultraviolet intensity monitoring method and system, and mobile terminal
Technical field
The present invention relates to mobile communications device field, more particularly to a kind of mobile end with ultraviolet intensity monitoring function End and its ultraviolet intensity monitoring method and system.
Background technology
The spectrum of sunshine can be divided into infrared ray, visible ray and ultraviolet according to the difference of wavelength, and sunshine passes through air The earth is reached after the filtration of layer, the light middle-ultraviolet lamp for reaching earth surface accounts for 7%, and ultraviolet is divided into short wavelength UV again Line (UVC), ultraviolet B radiation (UVB) and long wave ultraviolet (UVA), research has shown that, appropriate ultraviolet irradiation, which can be sterilized, to disappear Poison, can be with treatment part skin disease, but excessive ultraviolet irradiation can be damaged to skin and eyes, change the structure of matter With destructiveness, such as trigger intracellular DNA to change, cause skin canceration, damage health.
Therefore, when people go on a journey, protection preparation is carried out generally according to the uitraviolet intensity in weather forecast, to avoid body Injured by the improper irradiation of ultraviolet.However, generally weather forecast is subregion forecast domain, belong to same region differently Put and share same Weather information, and the ultraviolet index in weather forecast is generally by the medium-and-large-sized ultraviolet in weather station Monitoring device monitors uitraviolet intensity, and it is range-restricted larger that it is monitored, therefore, in the weather forecast that people actually look at The uitraviolet intensity in place of the uitraviolet intensity often and residing for itself has deviation.
The content of the invention
The purpose of the embodiment of the present invention, which is that offer is a kind of, can monitor the mobile terminal and its ultraviolet of uitraviolet intensity Intensity monitoring method and system, for solving above-mentioned technical problem.
A kind of ultraviolet intensity monitoring method, applied to ultraviolet intensity monitoring system and is configured with the uitraviolet intensity The mobile terminal of monitoring system.The ultraviolet intensity monitoring method includes step:Obtain visible ray and purple in local solar spectrum The light intensity ratio of outside line;The local visual intensity of detection;And according to the local visual intensity and the visible ray and ultraviolet Light intensity ratio, calculate local uitraviolet intensity.
In wherein a kind of embodiment, when calculating local uitraviolet intensity, if the beam intensity ratio of the visible ray and ultraviolet Rate is R, and the local visual intensity is L, then the local uitraviolet intensity L1 is:L1=L/R.
In wherein a kind of embodiment, the light intensity ratio of visible ray and ultraviolet in local solar spectrum is obtained, including: Obtain the physical location residing for the mobile terminal, according to the physical location, out of this mobile terminal it is preset all over the world can In the light intensity ratio data for seeing light and ultraviolet, the visible ray of the physical location and the light intensity ratio of ultraviolet are obtained.
In wherein a kind of embodiment, the light intensity ratio of visible ray and ultraviolet in local solar spectrum is obtained, including: The physical location residing for the mobile terminal is obtained, according to the physical location, networking simultaneously obtains the physical location from network data Visible ray and ultraviolet light intensity ratio.
In wherein a kind of embodiment, in addition to step:According to the local uitraviolet intensity, send ultraviolet with the locality The adaptable ultraviolet protection prompting of line strength.
In wherein a kind of embodiment, according to the local uitraviolet intensity, send and mutually fitted with the local uitraviolet intensity The ultraviolet protection prompting answered, including:The local uitraviolet intensity is compared with preset data;Judged according to comparative result The radiation levels of the local uitraviolet intensity;And send ultraviolet with the locality according to the radiation levels of the local uitraviolet intensity The adaptable ultraviolet protection prompting of line strength.
In wherein a kind of embodiment, the local uitraviolet intensity is compared with preset data, according to comparing knot Fruit judges the radiation levels of the local uitraviolet intensity, sends purple with the locality according to the radiation levels of the local uitraviolet intensity The adaptable ultraviolet protection prompting of outer line strength, including:
If the local uitraviolet intensity is less than or equal to default first intensity level, judge that the local uitraviolet intensity is Slight radiation, and send the first prompting;
If the local uitraviolet intensity is more than default first intensity level and less than or equal to default second intensity level, Then judge that the local uitraviolet intensity radiates for moderate, and send the second prompting;And
If the local uitraviolet intensity is more than default second intensity level, judge the local uitraviolet intensity for severe Radiation, and send the 3rd prompting.
In wherein a kind of embodiment, according to the local visual intensity and the beam intensity ratio of the visible ray and ultraviolet Rate, when calculating the local uitraviolet intensity, detects local visual intensity and to calculate the local ultraviolet in real time strong in real time Degree, and according to the radiation levels of the local uitraviolet intensity, the purple being adapted with the local uitraviolet intensity is sent in real time Outside line protection prompting.
In wherein a kind of embodiment, according to the local visual intensity and the beam intensity ratio of the visible ray and ultraviolet Rate, when calculating the local uitraviolet intensity, interval preset time, which performs the one-time detection local visual intensity and calculated, deserves Ground uitraviolet intensity, and judge the radiation levels of the local uitraviolet intensity, in the radiation levels of the local uitraviolet intensity When the radiation levels of the local uitraviolet intensity detected with the last time are inconsistent, send what is be adapted with the local uitraviolet intensity The ultraviolet protection is pointed out.
In wherein a kind of embodiment, send the ultraviolet protection being adapted with the local uitraviolet intensity and point out When, the mode of prompting includes any one or more combinations of in the following manner:Voice message, word message are pushed.
In wherein a kind of embodiment, obtain in local solar spectrum before the light intensity ratio of visible ray and ultraviolet, Local Weather Report is obtained, local weather variation tendency is analyzed, according to the local Changes in weather trend, determines that uitraviolet intensity is examined The detection frequency of survey.The ultraviolet intensity monitoring method also includes:According to the detection frequency, perform:Detect local visible light intensity Degree;And according to the local visual intensity and the light intensity ratio of the visible ray and ultraviolet, calculate local uitraviolet intensity.
A kind of ultraviolet intensity monitoring system, runs on mobile terminal, for monitoring purple local residing for the mobile terminal Outer line strength, the mobile terminal is built-in with light sensor.The ultraviolet intensity monitoring system is used for the ultraviolet of any of the above-described Line strength monitoring method, the ultraviolet intensity monitoring system includes:Light intensity ratio acquisition module, for obtaining local solar spectrum The light intensity ratio of middle visible ray and ultraviolet;Light-intensity test module, for detecting local visual intensity;And computing module, For the light intensity ratio according to the local visual intensity and the visible ray and ultraviolet, local uitraviolet intensity is calculated.
A kind of mobile terminal, including electronic body portion, in addition to:It is arranged at the light sensor in the electronic body portion; One or more processors;Memory;And above-mentioned ultraviolet intensity monitoring system, the ultraviolet intensity monitoring system deposited Storage is in the memory and is configured as being performed by the one or more processors.
Relative to prior art, ultraviolet intensity monitoring system and method provided in an embodiment of the present invention is worked as by obtaining The visual intensity on ground, and local uitraviolet intensity is calculated according to the light intensity ratio of local visible ray and ultraviolet, so that More accurate local uitraviolet intensity data are provided the user, allow users to be carried out according to actual uitraviolet intensity anti- Shield measure.
Brief description of the drawings
In order to illustrate more clearly of technical scheme, the required accompanying drawing used in embodiment will be made below Simply introduce, it should be apparent that, drawings in the following description are only some embodiments of the present invention, general for this area For logical technical staff, on the premise of not paying creative work, other accompanying drawings can also be obtained according to these accompanying drawings.
Fig. 1 is the schematic flow sheet of ultraviolet intensity monitoring method provided in an embodiment of the present invention;
Fig. 2 is the schematic diagram of solar spectrum energy distribution;
Fig. 3 is the judgement schematic diagram of the middle-ultraviolet lamp radiation levels of the ultraviolet intensity monitoring method shown in Fig. 1;
Fig. 4 is the schematic flow sheet for the ultraviolet intensity monitoring method that another embodiment of the present invention is provided;
Fig. 5 is the high-level schematic functional block diagram of ultraviolet intensity monitoring system provided in an embodiment of the present invention;
Fig. 6 is the schematic diagram of mobile terminal provided in an embodiment of the present invention;
Fig. 7 is the schematic diagram of the hardware environment of mobile terminal shown in Fig. 6.
Embodiment
Below in conjunction with the accompanying drawing in the embodiment of the present invention, the technical scheme in the embodiment of the present invention is carried out clear, complete Site preparation is described, it is clear that described embodiment is only a part of embodiment of the invention, rather than whole embodiments.It is based on Embodiment in the present invention, it is every other that those of ordinary skill in the art are obtained under the premise of creative work is not made Embodiment, belongs to the scope of protection of the invention.
Referring to Fig. 1, the embodiment of the present invention provides a kind of ultraviolet intensity monitoring method.The ultraviolet intensity monitoring side Method calculates uitraviolet intensity by monitoring the real-time light intensity of local environment according to the light intensity, so as to be user More accurate uitraviolet intensity data in real time are provided, allows users to be properly protected according to actual uitraviolet intensity and arranges Apply.In the particular embodiment, the ultraviolet intensity monitoring method is applied to ultraviolet intensity monitoring system as shown in Figure 5 S1 and the mobile terminal 1 00 (Fig. 6) for being configured with the ultraviolet intensity monitoring system S1, the ultraviolet intensity monitoring method Uitraviolet intensity for detecting physical location residing for the mobile terminal 1 00.Above-mentioned ultraviolet intensity monitoring method is specific Ground may comprise steps of:
Step S101:Obtain the light intensity ratio of visible ray and ultraviolet in local solar spectrum.Specifically, described move is obtained The visible ray and the light intensity ratio of ultraviolet of physical location residing for dynamic terminal 100.In some real-time modes, the step is specifically Can be:Obtain visible ray in the solar spectrum of physical location residing for the mobile terminal 1 00, infrared ray and ultraviolet three Light intensity ratio.
Please refer to Fig. 2, Fig. 2 is the schematic diagram that solar spectrum energy is distributed.Solar spectrum is divided successively by wavelength length For several wave spectrum areas such as radio wave, infrared ray, visible ray, ultraviolet and rays (X-ray and gamma-rays).It is wherein visible Light area can be subdivided into red, orange, yellow, green, blue or green, blue, purple seven-colour-light again.In solar radiation light, because of ozone, aqueous vapor in earth atmosphere With the strong absorption of other atmospheric molecules, wavelength, which is less than 0.295 μm and the sunshine more than 2.5 μm, can not reach earth surface, Therefore, the wavelength band for the sunshine observed on the ground is about 0.295~2.5 μm.
In the sunshine for reaching ground, sunshine of the wavelength between 0.15~2.5 μm occupies more than 99%, and main point Cloth is in visible region and infrared.Wherein, the wavelength of ray is less than 0.2 μm, and ultraviolet range is 0.2-0.400 μm, The wave-length coverage of visible ray is 0.4~0.76 μm, and ultrared wave-length coverage is 0.76~2.500 μm.From the energy of sunshine Distribution observation, it is seen that the emittance of light about occupies the 50% of solar radiation gross energy, and ultrared emittance is about occupied 43%, the emittance of ultraviolet about occupies 7%.Because the emittance of intensity of illumination and light is proportional, so visible The light intensity of light about occupies the 50% of solar radiation total light intensity, and ultrared light intensity about occupies 43%, and the light intensity of ultraviolet is about occupied 7%, therefore, in the sunshine for reaching ground, it is seen that light, infrared ray, the light intensity ratio of ultraviolet three are about 50:43:7.
However, the specific light intensity ratio of visible ray and ultraviolet is differed in the sunshine of regions of the world.One In a little embodiments, obtain in local solar spectrum before the light intensity ratio of visible ray and ultraviolet, institute is obtained by positioning State the physical location residing for mobile terminal 1 00.Specifically, locator is built-in with the mobile terminal 1 00, by obtaining State the data of locator, determine the physical location of the mobile terminal 1 00, according to the physical location, obtain visible ray with it is ultraviolet The light intensity ratio of line.Wherein, it is seen that the light intensity ratio of light and ultraviolet can also can be obtained by locally obtaining by networking Take.
In some other embodiments, all over the world visible is built-in with the memory of the mobile terminal 1 00 The light intensity ratio data of light and ultraviolet, it is determined that after the physical location of the mobile terminal 1 00, from the mobile terminal 1 00 Local storage in obtain the visible ray of the physical location and the light intensity ratio of ultraviolet.It is appreciated that real in other Apply in mode, when the mobile terminal 1 00 is connected to communication network, it is determined that after the physical location of the mobile terminal 1 00, joining Net simultaneously obtains the visible ray of the physical location and the light intensity ratio of ultraviolet by network data.
Step S103:The local visual intensity of detection.Specifically, by obtaining the light built in the mobile terminal 1 00 The data of line sensor, detect the visual intensity at the physical location of the mobile terminal 1 00.
Step S105:According to local visual intensity and the light intensity ratio of visible ray and ultraviolet, uitraviolet intensity is calculated. Specifically, according to the light intensity ratio and visual intensity of visible ray and ultraviolet, the reality of the mobile terminal 1 00 is calculated Uitraviolet intensity at position.
Specifically in some embodiments,, can if the light intensity ratio of visible ray and ultraviolet is R at the physical location It is L to see luminous intensity, then uitraviolet intensity L1 is:
L1=L/R.
For example, in a particular embodiment, it is seen that the light intensity ratio R=50/7 of light and ultraviolet, detection draws visible Luminous intensity is L, then uitraviolet intensity L1 is:
L1=L/ (50/7)=L* (7/50).
Step S107:Judge the radiation levels of ultraviolet.Specifically, calculate and obtain after uitraviolet intensity, this is ultraviolet Line strength is compared with preset data, and ultraviolet radiation grade is judged further according to comparative result.
Please refer to Fig. 3, further, the radiation levels of ultraviolet are judged, including:By the uitraviolet intensity with presetting The first intensity level, the second intensity level be compared, if the uitraviolet intensity be less than or equal to first intensity level, then it is assumed that The uitraviolet intensity is slight radiation;If the uitraviolet intensity is more than first intensity level and less than or equal to the last the second Angle value, then it is assumed that the uitraviolet intensity radiates for moderate;If the uitraviolet intensity is more than second intensity level, then it is assumed that the purple Outer line strength degree of attaching most importance to radiation.It is understood that first intensity level, second intensity level are on uitraviolet intensity Physical quantity, first intensity level, second intensity level can be preset in the ultraviolet intensity monitoring system S1, In the memory that the mobile terminal 1 00 can be preset in.
Step S109:According to the radiation levels of ultraviolet, corresponding ultraviolet protection prompting is sent.
If for example, the uitraviolet intensity is slight radiation, sending the first prompting, first prompting can be:Prompting is purple Outside line is slight radiation, and proposes on the correspondence protection suggestion under slight ultraviolet situation, for example, to advise under slight ultraviolet, Appropriate ultraviolet is beneficial to human body;If the uitraviolet intensity is moderate radiation, the second prompting is sent, second prompting can be with For:Point out ultraviolet to be radiated for moderate, and propose on the correspondence protection suggestion under moderate ultraviolet situation, for example, to advise user Ultraviolet protection measure is carried out, such as suggestion smears the suncream of the radiation levels of respective intensities, avoids being directly exposed to daylight Under;If the uitraviolet intensity radiates for severe, the 3rd prompting is sent, the 3rd prompting can be:Prompting ultraviolet is severe Radiation, and propose on the correspondence protection suggestion under severe ultraviolet situation, for example, to advise that daylight in this case should not be appeared in Under, point out user to note burning.Specifically, when issuing the user with ultraviolet protection prompting, the mode of prompting includes but not limited In:Voice message, word message are pushed, and such as informing message is pushed, pop-up message is pushed, memorandum is pushed, pushed in APP Deng.
In the present embodiment, the ultraviolet intensity monitoring method is examined in real time when monitoring uitraviolet intensity Survey and update uitraviolet intensity data in real time, ultraviolet protection prompting sent in real time, to allow user to obtain at any time In real time, uitraviolet intensity value on the spot, so as to more properly carry out ultraviolet protection measure.
It is understood that in some embodiments, the ultraviolet intensity monitoring method is in monitoring uitraviolet intensity When, the uitraviolet intensity data that preset time is detected and updates the mobile terminal 1 00 can be spaced, for example, interval Preset time can be 1 minute, 2 minutes, 5 minutes, 15 minutes, 30 minutes etc..It is possible thereby to reduce for performing the purple The ultraviolet intensity monitoring system S1 of outside line intensity monitoring method and the data volume of the mobile terminal 1 00 and service are negative Load, makes the service of the ultraviolet intensity monitoring system S1, the mobile terminal more smooth.
It is understood that in some embodiments, the ultraviolet intensity monitoring method is in monitoring uitraviolet intensity When, interval preset time performs the local visual intensity of one-time detection and calculates the local uitraviolet intensity, and judges the locality The radiation levels of uitraviolet intensity, and in the radiation levels and the upper local ultraviolet once detected of the local uitraviolet intensity When the radiation levels of intensity are inconsistent, send the ultraviolet protection being adapted with the local uitraviolet intensity and point out.Thus, may be used To reduce the ultraviolet intensity monitoring system S1 and the mobile terminal that are used for performing the ultraviolet intensity monitoring method 100 data volume and service burden, makes the service of the ultraviolet intensity monitoring system S1, the mobile terminal more smooth, Can avoid causing user simultaneously it is excessive bother, improve Consumer's Experience.
Referring to Fig. 4, it is understood that in some embodiments, before above-mentioned step S101 is performed, may be used also With including step:
Step S201:Obtain Local Weather Report.Specifically, can be directly from described when obtaining Local Weather Report Obtained in the weather forecast APP of mobile terminal 1 00, can also network and be obtained from network data.
Step S203:Analyze local weather variation tendency.The Changes in weather trend, it should be understood that current weather condition Development trend, for example, current weather is ceiling unlimited weather, and weather forecast is shown as clear to cloudy, then can be according to the day Gas forecast analysis goes out the development trend of current weather condition.
Step S205:According to the local Changes in weather trend, the detection frequency of uitraviolet intensity detection is determined.It is specific and Speech, when Changes in weather is very fast, the detection frequency of uitraviolet intensity detection can be accordingly higher, when weather condition is relatively stable When, the detection frequency of uitraviolet intensity detection can be with relatively low.In specific example, e.g., current weather is ceiling unlimited weather, And to be shown as whole day sunny for weather forecast, then it is assumed that Changes in weather trend is more steady, and think the inspection of uitraviolet intensity detection Measured frequency can be defined as lower frequency, such as every three hours perform one-time detection;In another specific example, e.g., when Preceding weather is ceiling unlimited weather, and weather forecast is shown as clear to cloudy and turns light rain, then it is assumed that Changes in weather trend is more delayed With, and think that the detection frequency of uitraviolet intensity detection can be defined as intermediate frequency, for example every two hours perform one-time detection; In another specific example, e.g., current weather is ceiling unlimited weather, and weather forecast is shown as shower, then it is assumed that weather Variation tendency more drastically, and thinks that the detection frequency of uitraviolet intensity detection can be defined as upper frequency, such as each small Shi Zhihang one-time detections.
It is understood that above-mentioned step S201, S203, S205 execution is not limited to before step S101, And can be performed between step S101 and step S103.
In the present embodiment, the ultraviolet intensity monitoring method also includes:
Step S207:According to the detection frequency, perform:The local visual intensity of detection;And according to the local visible ray The light intensity ratio of intensity and the visible ray and ultraviolet, calculates local uitraviolet intensity.Specifically, step S207 can be Perform, can also be performed between above-mentioned step S101 and step S103 after above-mentioned step S109.Specifically implementing Among example, when step S207 is performed after above-mentioned step S101 and step S103, step S207 is specially:According to this Frequency is detected, above-mentioned step S103, S105 is performed.
It is appreciated that in some other embodiments, the step S207 can be:According to the detection frequency, hold Row above-mentioned step S103, S105, S107, S109, i.e. according to the detection frequency, are performed:The local visual intensity of detection;With And according to the local visual intensity and the light intensity ratio of the visible ray and ultraviolet, local uitraviolet intensity is calculated, and judge The radiation levels of local ultraviolet, according to the radiation levels of ultraviolet, send corresponding ultraviolet protection prompting.Thus, according to Actual Changes in weather situation, uitraviolet intensity detection can be carried out for greater flexibility, the ultraviolet intensity monitoring can be reduced System S1 and the mobile terminal 1 00 data volume and service burden, make the ultraviolet intensity monitoring system S1, the movement The service of terminal is more smooth, is avoiding causing user excessive while bothering, can also be real according to Changes in weather situation When inform user's uitraviolet intensity situation of change, more intimate care is brought to user, Consumer's Experience is improved.
It is understood that in other embodiments, the ultraviolet intensity monitoring method is strong in monitoring ultraviolet When spending, interlude can allow user to pre-set and be stored in the ultraviolet intensity monitoring system between monitoring twice In S1 and/or the mobile terminal 1 00, for example, the preset time at interval can be set by the user as 1 minute, 2 minutes, 5 points Clock, 15 minutes, 30 minutes etc..Thus, it is possible to which the demand of user is flexibly met, Consumer's Experience is improved.
Referring to Fig. 5, based on above-mentioned ultraviolet intensity monitoring method, it is strong that embodiment of the present invention provides a kind of ultraviolet Monitoring system S1 is spent, is run in mobile terminal 1 00 as shown in Figure 6.The ultraviolet intensity monitoring system S1 is used to perform Above-mentioned ultraviolet intensity monitoring method, to monitor the real-time light intensity of local environment residing for the mobile terminal 1 00, and root Uitraviolet intensity is calculated according to the light intensity, so as to provide the user more accurate uitraviolet intensity data in real time, is made User can properly protect measure according to actual uitraviolet intensity.In embodiments of the present invention, the uitraviolet intensity prison Examining system S1 is stored in the memory of the mobile terminal 1 00, and be configured as by one of the mobile terminal 1 00 or Multiple computing devices.
Specifically in the embodiment shown in fig. 5, the ultraviolet intensity monitoring system S1 includes light intensity ratio acquisition module 201st, light-intensity test module 203 and computing module 205.The light intensity ratio acquisition module 201 is used to obtain in solar spectrum The light intensity ratio of visible ray and ultraviolet, the light-intensity test module 203 is used for the intensity for detecting visible ray in environment, the meter Calculating module 205 is used for the intensity of computing environment middle-ultraviolet lamp.It is understood that above-mentioned each module can be to run on computer Program module in readable storage medium storing program for executing, the purposes of above-mentioned modules and work are specific as follows:
The light intensity ratio acquisition module 201 is used for the light intensity ratio for obtaining visible ray and ultraviolet in solar spectrum. In some embodiments, the light intensity ratio acquisition module 201 be additionally operable to obtain in local solar spectrum visible ray, infrared ray with Ultraviolet three's light intensity ratio.
However, the specific light intensity ratio of visible ray and ultraviolet is differed in the sunshine of regions of the world.At this In embodiment, the ultraviolet intensity monitoring system S1 can obtain the specific light of its residing local visible ray and ultraviolet Strong ratio.Specifically, the light intensity ratio acquisition module 201 specifically includes positioning unit 2011 and acquiring unit Locator is built-in with 2013, the ultraviolet intensity monitoring system S1, the positioning unit 2011 is used for described by obtaining The data of locator, determine the physical location of the ultraviolet intensity monitoring system S1, and the acquiring unit 2013 is used to obtain The visible ray of the physical location and the light intensity ratio of ultraviolet.Wherein, it is seen that the light intensity ratio of light and ultraviolet can be by this Ground is obtained, and can also be obtained by networking.
Specifically, in some embodiments, be built-in with the memory of the mobile terminal 1 00 all over the world can The light intensity ratio data of light and ultraviolet is seen, when the positioning unit 2011 determines the reality of the ultraviolet intensity monitoring system S1 Behind the position of border, the acquiring unit 2013 obtains the physical location from the local storage of the mobile terminal 1 00 The light intensity ratio of light and ultraviolet.
It is appreciated that in some embodiments, when the mobile terminal 1 00 is connected to communication network, the positioning list Member 2011 determines after the physical location of the ultraviolet intensity monitoring system S1 that the acquiring unit 2013 is networked and by network Data obtains the visible ray of the physical location and the light intensity ratio of ultraviolet.
The light-intensity test module 203 is used to detect visible at the physical location of the ultraviolet intensity monitoring system S1 Luminous intensity.Specifically, the light-intensity test module 203 should by the light sensor detection built in the mobile terminal 1 00 Visual intensity at physical location.
The computing module 205 is used for light intensity ratio and visual intensity according to visible ray and ultraviolet, calculates institute State the uitraviolet intensity at ultraviolet intensity monitoring system S1 physical location.Specifically, if at the physical location, it is seen that light Light intensity ratio with ultraviolet is R, it is seen that luminous intensity is L, then uitraviolet intensity L1 is:
L1=L/R.
For example, in a particular embodiment, it is seen that the light intensity ratio R=50/7 of light and ultraviolet, detection draws visible Luminous intensity is L, then uitraviolet intensity L1 is:
L1=L/ (50/7)=L* (7/50).
In some embodiments, the ultraviolet intensity monitoring system S1 can also include intensity judge module 207 with And reminding module 209.The intensity judge module 207 is used to judge at the physical location of the ultraviolet intensity monitoring system S1 Uitraviolet intensity radiation levels, the reminding module 209 be used for sent according to the ultraviolet radiation grade on ultraviolet The protection prompting of line.
Specifically, the intensity judge module 207 is used to obtain the uitraviolet intensity that the computing module 205 is calculated, And be compared the uitraviolet intensity and preset data, judge ultraviolet radiation grade further according to comparative result.
Referring to Fig. 3, further, the intensity judge module 207 judges the radiation levels of ultraviolet, including: The uitraviolet intensity is compared with default first intensity level, the second intensity level, if the uitraviolet intensity is less than or equal to First intensity level, then it is assumed that the uitraviolet intensity is slight;If the uitraviolet intensity is more than first intensity level and small In or equal to second intensity level, then it is assumed that the uitraviolet intensity is moderate;If the uitraviolet intensity is more than the last the second Angle value, then it is assumed that the uitraviolet intensity is severe.It is understood that first intensity level, second intensity level are pass In the physical quantity of uitraviolet intensity, first intensity level, second intensity level can be preset in the uitraviolet intensity prison In examining system S1, in the memory that the mobile terminal 1 00 can also be preset in.
The reminding module 209 is used for according to the ultraviolet radiation grade, issues the user with corresponding ultraviolet protection Prompting.If for example, the uitraviolet intensity is slight, sending the first prompting, first prompting can be:It is light to point out ultraviolet Degree radiation, and propose on the correspondence protection suggestion under slight ultraviolet situation, for example, to advise under slight ultraviolet, appropriate purple Outside line irradiation is beneficial to human body;If the uitraviolet intensity is moderate, the second prompting is sent, second prompting can be:Prompting Ultraviolet radiates for moderate, and proposes on the correspondence protection suggestion under moderate ultraviolet situation, for example, to advise that user carries out purple Outside line safeguard procedures, suggestion smear the suncream of correspondence radiation levels, avoid being directly exposed under daylight;If the uitraviolet intensity For severe, then the 3rd prompting is sent, the 3rd prompting can be:Point out ultraviolet to be radiated for severe, and propose purple on severe Correspondence protection suggestion under outside line situation, for example, advise in this case to expose in the sunlight, point out user to note burning.Tool For body, the reminding module 209 control the mobile terminal 1 00 issue the user with ultraviolet protection prompting when, the side of prompting Formula includes but is not limited to any one or more combinations of in the following manner:Voice message, word message are pushed, such as informing message Push, the push of pop-up message, memorandum push, the interior push of APP etc..
In some embodiments, the ultraviolet intensity monitoring system S1 also includes synoptic analysis module 211 and frequency Analysis module 213.
The synoptic analysis module 211 is used for the weather forecast for obtaining locality, and analyzes local weather variation tendency.Specifically Ground, the synoptic analysis module 211 is used for the physical location according to residing for the ultraviolet intensity monitoring system S1, obtains the reality Weather forecast information at the position of border, it is pre- that it directly can obtain the weather out of the mobile terminal 1 00 weather forecast APP Notify breath, can also network and obtain the weather forecast information from network data.The synoptic analysis module 211 is additionally operable to root According to the weather forecast information, local weather variation tendency is analyzed.The Changes in weather trend, it should be understood that current weather condition Development trend, for example, current weather is ceiling unlimited weather, and weather forecast is shown as clear to cloudy, then can be according to the day Gas forecast analysis goes out the development trend of current weather condition.
The frequency analysis module 213 is used for the inspection that uitraviolet intensity detection is determined according to the local Changes in weather trend Measured frequency, to allow the light-intensity test module 203 according to the local visual intensity of the detection frequency detecting, and allows the meter Module 205 is calculated according to the local visual intensity and the light intensity ratio of the visible ray and ultraviolet, local uitraviolet intensity is calculated.
Specifically, when Changes in weather is very fast, the detection frequency of uitraviolet intensity detection can be accordingly higher, works as weather When situation is relatively stable, the detection frequency of uitraviolet intensity detection can be with relatively low.In specific example, e.g., current weather is Ceiling unlimited weather, and to be shown as whole day sunny for weather forecast, then it is assumed that Changes in weather trend is more steady, and thinks ultraviolet The detection frequency of intensity detection can be defined as lower frequency, such as every three hours perform one-time detection;Another specific In example, e.g., current weather is ceiling unlimited weather, and weather forecast is shown as clear to cloudy and turns light rain, then it is assumed that weather becomes Change trend more relaxes, and thinks that the detection frequency of uitraviolet intensity detection can be defined as intermediate frequency, for example every two hours Perform one-time detection;In another specific example, e.g., current weather is ceiling unlimited weather, and weather forecast is shown as battle array Rain, then it is assumed that Changes in weather trend more drastically, and thinks that the detection frequency of uitraviolet intensity detection can be defined as higher-frequency Rate, such as each hour performs one-time detection.
In summary, the ultraviolet intensity monitoring system and method that embodiment of the present invention is provided, local by obtaining Visual intensity, and local uitraviolet intensity is calculated according to the light intensity ratio of local visible ray and ultraviolet, so as to use Family provides more accurate local uitraviolet intensity data, allows users to be properly protected according to actual uitraviolet intensity and arranges Apply.
Referring to Fig. 6, based on above-mentioned ultraviolet intensity monitoring system S1 and ultraviolet intensity monitoring method, this hair Bright embodiment also provides a kind of mobile terminal 1 00, and it includes electronic body portion 10, the electronic body portion 10 include housing 12 and It is arranged on the main display 120 on the housing 12.The housing 12 can be made of metal, such as steel, aluminium alloy.This implementation In example, the main display 120 generally includes display panel 111, may also comprise and the display panel 111 is carried out for responding Circuit of touch control operation etc..The display panel 111 can be a liquid crystal display panel (Liquid Crystal Display, LCD), in certain embodiments, the display panel 111 is simultaneously a touch-screen 109.
Please refer to Fig. 7, in actual application scenarios, the mobile terminal 1 00 can be entered as intelligent mobile phone terminal Exercise and use, the electronic body portion 10 generally also includes one or more (one is only shown in figure) processors in this case 102nd, memory 104, RF (Radio Frequency, radio frequency) module 106, voicefrequency circuit 110, sensor 114, input module 118th, power module 122.It will appreciated by the skilled person that the structure shown in Fig. 7 is only signal, it is not to described The structure in electronic body portion 10 causes to limit.For example, the electronic body portion 10 may also include it is more more than shown in Fig. 7 or more Few component, or with the configuration different from shown in Fig. 7.
It will appreciated by the skilled person that for the processor 102, every other component belongs to In peripheral hardware, it is coupled between the processor 102 and these peripheral hardwares by multiple Peripheral Interfaces 124.The Peripheral Interface 124 can Based on following standard implementation:Universal Asynchronous Receive/dispensing device (Universal Asynchronous Receiver/ Transmitter, UART), universal input/output (General Purpose Input Output, GPIO), serial peripheral connect Mouthful (Serial Peripheral Interface, SPI), internal integrated circuit (Inter-Integrated Circuit, I2C), but it is not limited to above-mentioned standard.In some instances, the Peripheral Interface 124 can only include bus;In other examples In, the Peripheral Interface 124 may also include other elements, such as one or more controller, such as connecting the display The display controller of panel 111 or the storage control for connecting memory.In addition, these controllers can also be from described Spun off in Peripheral Interface 124, and be integrated in the processor 102 or corresponding peripheral hardware in.
The memory 104 can be used for storage software program and module, and the processor 102 is stored in institute by operation The software program and module in memory 104 are stated, so as to perform various function application and data processing.The memory 104 may include high speed random access memory, may also include nonvolatile memory, such as one or more magnetic storage device, sudden strain of a muscle Deposit or other non-volatile solid state memories.In some instances, the memory 104 can further comprise relative to institute The remotely located memory of processor 102 is stated, these remote memories can pass through network connection to the electronic body portion 10 Or the main display 120.The example of above-mentioned network includes but is not limited to internet, intranet, LAN, mobile communication Net and combinations thereof.
The RF modules 106 are used to receiving and sending electromagnetic wave, realize the mutual conversion of electromagnetic wave and electric signal, so that Communicated with communication network or other equipment.The RF modules 106 may include various existing for performing these functions Circuit element, for example, antenna, RF transceiver, digital signal processor, encryption/deciphering chip, subscriber identity module (SIM) card, memory etc..The RF modules 106 can be carried out with various networks such as internet, intranet, wireless network Communication is communicated by wireless network with other equipment.Above-mentioned wireless network may include cellular telephone networks, wireless LAN or Metropolitan Area Network (MAN).Above-mentioned wireless network can use various communication standards, agreement and technology, including but not limited to Global system for mobile communications (Global System for Mobile Communication, GSM), enhanced mobile communication skill Art (Enhanced Data GSM Environment, EDGE), Wideband CDMA Technology (wideband code Division multiple access, W-CDMA), CDMA (Code division access, CDMA), time-division Multiple access technology (time division multiple access, TDMA), adopting wireless fidelity technology (Wireless, Fidelity, WiFi) (such as American Institute of Electrical and Electronics Engineers's standard IEEE 802.10A, IEEE 802.11b, IEEE802.11g and/or IEEE 802.11n), the networking telephone (Voice over internet protocal, VoIP), worldwide interoperability for microwave accesses (Worldwide Interoperability for Microwave Access, Wi-Max), other be used for mail, IMU The agreement of news and short message, and any other suitable communications protocol, or even may include that those are not developed currently yet Agreement.
Voicefrequency circuit 110, loudspeaker 101, sound jack 103, microphone 105 provide user and the electronic body jointly COBBAIF between portion 10 or the main display 120.Specifically, the voicefrequency circuit 110 connects at the processor 102 Voice data is received, voice data electric signal is converted into, by electric signal transmission to the loudspeaker 101.The loudspeaker 101 will Electric signal is converted to the sound wave that human ear can be heard.The voicefrequency circuit 110 receives electric signal also at the microphone 105, will Electric signal is converted to voice data, and gives the processor 102 to be further processed data transmission in network telephony.Audio number According to can be obtained at the memory 104 or by the RF modules 106.In addition, voice data can also be stored to institute State in memory 104 or be transmitted by the RF modules 106.
The sensor 114 is arranged in the electronic body portion 10 or in the main display 120, the sensor 114 example includes but is not limited to:Optical sensor, operation sensor, pressure sensor, gravity accelerometer and Other sensors.
Specifically, optical sensor may include ambient light sensor 114F and proximity transducer, wherein, ambient light level Device 114F can be with the light and shade of sense ambient light, and some modules for allowing for the execution of processor 102 utilize the ambient light Line sensor 114F output data automatically adjusts the output of display.Further, the light sensor 114F passes through light The intensity of visible ray in quick element testing environment, allow for the processor 102 using light sensor 114F data come Perform above-mentioned ultraviolet intensity monitoring method.Specifically in the present embodiment, the light sensor 114F is adjacent to described aobvious Show that panel 111 is set.The proximity transducer can be when there is object close to the main display 120, such as described electronic body When portion 10 is moved in one's ear, the processor 102 closes display output.
As one kind of motion sensor, gravity accelerometer can detect in all directions (generally three axles) and accelerate The size of degree, can detect that size and the direction of gravity when static, available for the application for recognizing the posture of mobile terminal 1 00 (such as horizontal/vertical screen switching, dependent game, magnetometer pose calibrating), Vibration identification correlation function (such as pedometer, percussion) etc.. In addition, the electronic body portion 10 can also configure the other sensors such as gyroscope, barometer, hygrometer, thermometer, herein no longer Repeat,
In the present embodiment, the input module 118 may include the touch-screen being arranged on the main display 120 109, the touch-screen 109 collects touch operation of the user on or near it, and (such as user is any using finger, stylus etc. Operation of the suitable object or annex on the touch-screen 109 or near the touch-screen 109), and according to presetting The corresponding attachment means of driven by program.Optionally, the touch-screen 109 may include touch detecting apparatus and touch controller. Wherein, the touch detecting apparatus detects the touch orientation of user, and detects the signal that touch operation is brought, and transmits a signal to The touch controller;The touch controller receives touch information from the touch detecting apparatus, and by the touch information It is converted into contact coordinate, then gives the processor 102, and order that the processor 102 sends can be received and performed. Furthermore, it is possible to realize touching for the touch-screen 109 using polytypes such as resistance-type, condenser type, infrared ray and surface acoustic waves Touch detection function.Except the touch-screen 109, in other change embodiments, the input module 118 can also include it His input equipment, such as button 107.The button 107 for example may include the character keys for inputting character, and for triggering The control button of control function.The example of the control button includes " return main screen " button, on/off button etc..
The main display 120 is used to show the information inputted by user, is supplied to the information and the electronics of user The various graphical user interface of body 10, these graphical user interface can by figure, text, icon, numeral, video and its Any combination is constituted, in an example, the touch-screen 109 may be disposed on the display panel 111 so as to it is described Display panel 111 constitutes an entirety.
The power module 122 is used to provide supply of electric power to the processor 102 and other each components.Specifically, The power module 122 may include power-supply management system, one or more power supplys (such as battery or alternating current), charging circuit, Power-fail detection circuit, inverter, indicator of the power supply status and other arbitrarily with the electronic body portion 10 or the master Generation, management and the related component of distribution of electric power in display screen 120.
The mobile terminal 1 00 also includes locator 119, and the locator 119 is used to determine the institute of mobile terminal 1 00 The physical location at place.In the present embodiment, the locator 119 realizes the positioning of the mobile terminal 1 00 using positioning service, The positioning service, it should be understood that the positional information of the mobile terminal 1 00 is obtained by specific location technology (as passed through Latitude coordinate), technology or the service for the position for being positioned object are marked on the electronic map.
It should be appreciated that above-mentioned mobile terminal 1 00 is not limited to intelligent mobile phone terminal, it, which should refer to, to move The computer equipment used in dynamic.Specifically, mobile terminal 1 00, refers to the mobile computer for being equipped with intelligent operating system Equipment, mobile terminal 1 00 includes but is not limited to smart mobile phone, intelligent watch, notebook, tablet personal computer, POS even including car Carry computer, etc..
In the description of this specification, reference term " one embodiment ", " some embodiments ", " example ", " specifically show The description of example " or " some examples " etc. means to combine specific features, structure, material or the spy that the embodiment or example are described Point is contained at least one embodiment of the present invention or example.In this manual, to the schematic representation of above-mentioned term not Identical embodiment or example must be directed to.Moreover, specific features, structure, material or the feature of description can be with office Combined in an appropriate manner in one or more embodiments or example.In addition, in the case of not conflicting, the skill of this area Art personnel can be tied the not be the same as Example or the feature of example and non-be the same as Example or example described in this specification Close and combine.
In addition, term " first ", " second " are only used for describing purpose, and it is not intended that indicating or implying relative importance Or the implicit quantity for indicating indicated technical characteristic.Thus, define " first ", the feature of " second " can express or Implicitly include at least one this feature.In the description of the invention, " multiple " are meant that at least two, such as two, three It is individual etc., unless otherwise specifically defined.
Any process described otherwise above or method description are construed as in flow chart or herein, represent to include Module, fragment or the portion of the code of one or more executable instructions for the step of realizing specific logical function or process Point, and the scope of the preferred embodiment of the present invention includes other realization, wherein can not be by shown or discussion suitable Sequence, including according to involved function by it is basic simultaneously in the way of or in the opposite order, carry out perform function, this should be of the invention Embodiment person of ordinary skill in the field understood.
Represent in flow charts or logic and/or step described otherwise above herein, for example, being considered use In the order list for the executable instruction for realizing logic function, it may be embodied in any computer-readable medium, for Instruction execution system, device or equipment (such as computer based system including the system of processor or other can be held from instruction The system of row system, device or equipment instruction fetch and execute instruction) use, or combine these instruction execution systems, device or set It is standby and use.For the purpose of this specification, " computer-readable medium " can any can be included, store, communicate, propagate or pass Defeated program is for instruction execution system, device or equipment or the dress for combining these instruction execution systems, device or equipment and using Put.The more specifically example (non-exhaustive list) of computer-readable medium includes following:Electricity with one or more wirings Connecting portion (mobile terminal), portable computer diskette box (magnetic device), random access memory (RAM), read-only storage (ROM), erasable edit read-only storage (EPROM or flash memory), fiber device, and portable optic disk is read-only deposits Reservoir (CDROM).In addition, can even is that can be in the paper of printing described program thereon or other are suitable for computer-readable medium Medium, because can then enter edlin, interpretation or if necessary with it for example by carrying out optical scanner to paper or other media His suitable method is handled electronically to obtain described program, is then stored in computer storage.
It should be appreciated that each several part of the present invention can be realized with hardware, software, firmware or combinations thereof.Above-mentioned In embodiment, the software that multiple steps or method can in memory and by suitable instruction execution system be performed with storage Or firmware is realized.If, and in another embodiment, can be with well known in the art for example, realized with hardware Any one of row technology or their combination are realized:With the logic gates for realizing logic function to data-signal Discrete logic, the application specific integrated circuit with suitable combinational logic gate circuit, programmable gate array (PGA), scene Programmable gate array (FPGA) etc..
Those skilled in the art are appreciated that to realize all or part of step that above-described embodiment method is carried Rapid to can be by program to instruct the hardware of correlation to complete, described program can be stored in a kind of computer-readable storage medium In matter, the program upon execution, including one or a combination set of the step of embodiment of the method.In addition, in each embodiment of the invention In each functional unit can be integrated in a processing module or unit is individually physically present, can also two Individual or two or more unit is integrated in a module.Above-mentioned integrated module can both be realized in the form of hardware, also may be used To be realized in the form of software function module.If the integrated module realized using in the form of software function module and as Independent production marketing in use, can also be stored in a computer read/write memory medium.
Storage medium mentioned above can be read-only storage, disk or CD etc..Although having been shown and retouching above Embodiments of the invention are stated, it is to be understood that above-described embodiment is exemplary, it is impossible to be interpreted as the limit to the present invention System, one of ordinary skill in the art can be changed to above-described embodiment, change, replace and become within the scope of the invention Type.
Finally it should be noted that:The above embodiments are merely illustrative of the technical solutions of the present invention, rather than its limitations;Although The present invention is described in detail with reference to the foregoing embodiments, one of ordinary skill in the art is when understanding:It still can be with Technical scheme described in foregoing embodiments is modified, or equivalent substitution is carried out to which part technical characteristic;And These modification or replace, do not drive appropriate technical solution essence depart from various embodiments of the present invention technical scheme spirit and Scope.

Claims (13)

1. a kind of ultraviolet intensity monitoring method, applied to ultraviolet intensity monitoring system and uitraviolet intensity prison is configured with The mobile terminal of examining system, it is characterised in that the ultraviolet intensity monitoring method includes step:
Obtain the light intensity ratio of visible ray and ultraviolet in local solar spectrum;
The local visual intensity of detection;And
According to the local visual intensity and the light intensity ratio of the visible ray and ultraviolet, local uitraviolet intensity is calculated.
2. ultraviolet intensity monitoring method as claimed in claim 1, it is characterised in that when calculating local uitraviolet intensity, if The light intensity ratio of the visible ray and ultraviolet is R, and the local visual intensity is L, then the local uitraviolet intensity L1 is:
L1=L/R.
3. ultraviolet intensity monitoring method as claimed in claim 1, it is characterised in that obtain visible ray in local solar spectrum With the light intensity ratio of ultraviolet, including:
The physical location residing for the mobile terminal is obtained,
According to the physical location, the light intensity ratio data of preset visible ray and ultraviolet all over the world out of this mobile terminal In, obtain the visible ray of the physical location and the light intensity ratio of ultraviolet.
4. ultraviolet intensity monitoring method as claimed in claim 1, it is characterised in that obtain visible ray in local solar spectrum With the light intensity ratio of ultraviolet, including:
The physical location residing for the mobile terminal is obtained,
According to the physical location, networking simultaneously obtains the visible ray of the physical location and the beam intensity ratio of ultraviolet from network data Rate.
5. ultraviolet intensity monitoring method as claimed in claim 1, it is characterised in that also include:According to the local ultraviolet Intensity, sends the ultraviolet protection being adapted with the local uitraviolet intensity and points out.
6. ultraviolet intensity monitoring method as claimed in claim 5, it is characterised in that according to the local uitraviolet intensity, hair Go out the ultraviolet protection being adapted with the local uitraviolet intensity to point out, including:
The local uitraviolet intensity is compared with preset data;
The radiation levels of the local uitraviolet intensity are judged according to comparative result;And
The ultraviolet protection being adapted with the local uitraviolet intensity is sent according to the radiation levels of the local uitraviolet intensity to carry Show.
7. ultraviolet intensity monitoring method as claimed in claim 6, it is characterised in that by the local uitraviolet intensity with presetting Data are compared, and the radiation levels of the local uitraviolet intensity are judged according to comparative result, according to the local uitraviolet intensity Radiation levels send with the local uitraviolet intensity be adapted ultraviolet protection point out, including:
If the local uitraviolet intensity is less than or equal to default first intensity level, judge that the local uitraviolet intensity is slight Radiation, and send the first prompting;
If the local uitraviolet intensity is more than default first intensity level and less than or equal to default second intensity level, sentence The disconnected local uitraviolet intensity is that moderate is radiated, and sends the second prompting;And
If the local uitraviolet intensity is more than default second intensity level, judge the local uitraviolet intensity for severe spoke Penetrate, and send the 3rd prompting.
8. ultraviolet intensity monitoring method as claimed in claim 6, it is characterised in that according to the local visual intensity and this The light intensity ratio of visible ray and ultraviolet, when calculating the local uitraviolet intensity, detects local visual intensity and real in real time When calculate the local uitraviolet intensity, and according to the radiation levels of the local uitraviolet intensity, send in real time and the locality The adaptable ultraviolet protection prompting of uitraviolet intensity.
9. ultraviolet intensity monitoring method as claimed in claim 6, it is characterised in that according to the local visual intensity and this The light intensity ratio of visible ray and ultraviolet, when calculating the local uitraviolet intensity, interval preset time performs one-time detection and deserved Ground visual intensity simultaneously calculates the local uitraviolet intensity, and judge the radiation levels of the local uitraviolet intensity, in the locality Uitraviolet intensity radiation levels and the inconsistent radiation levels of the local uitraviolet intensity of last detection when, send with should The adaptable ultraviolet protection prompting of local uitraviolet intensity.
10. ultraviolet intensity monitoring method as claimed in claim 5, it is characterised in that send and the local uitraviolet intensity When the adaptable ultraviolet protection is pointed out, the mode of prompting includes any one or more combinations of in the following manner:Voice is carried Show, word message is pushed.
11. ultraviolet intensity monitoring method as claimed in claim 1, it is characterised in that obtain visible in local solar spectrum Before the light intensity ratio of light and ultraviolet, Local Weather Report is obtained, local weather variation tendency is analyzed, according to the local weather Variation tendency, determines the detection frequency of uitraviolet intensity detection;
The ultraviolet intensity monitoring method also includes:According to the detection frequency, perform:
The local visual intensity of detection;And
According to the local visual intensity and the light intensity ratio of the visible ray and ultraviolet, local uitraviolet intensity is calculated.
It is local ultraviolet residing for the mobile terminal for monitoring 12. a kind of ultraviolet intensity monitoring system, runs on mobile terminal Line strength, the mobile terminal is built-in with light sensor, it is characterised in that the ultraviolet intensity monitoring system is used for perform claim It is required that any one of 1~11 ultraviolet intensity monitoring method, the ultraviolet intensity monitoring system includes:
Light intensity ratio acquisition module, the light intensity ratio for obtaining visible ray and ultraviolet in local solar spectrum;
Light-intensity test module, for detecting local visual intensity;And
Computing module, for the light intensity ratio according to the local visual intensity and the visible ray and ultraviolet, calculates local purple Outer line strength.
13. a kind of mobile terminal, including electronic body portion, it is characterised in that also include:
It is arranged at the light sensor in the electronic body portion;
One or more processors;
Memory;And
The ultraviolet intensity monitoring system of claim 12, the ultraviolet intensity monitoring system is stored in the memory and quilt It is configured to be performed by the one or more processors.
CN201710677075.7A 2017-08-09 2017-08-09 Ultraviolet intensity monitoring method and system and mobile terminal Expired - Fee Related CN107314815B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201710677075.7A CN107314815B (en) 2017-08-09 2017-08-09 Ultraviolet intensity monitoring method and system and mobile terminal

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201710677075.7A CN107314815B (en) 2017-08-09 2017-08-09 Ultraviolet intensity monitoring method and system and mobile terminal

Publications (2)

Publication Number Publication Date
CN107314815A true CN107314815A (en) 2017-11-03
CN107314815B CN107314815B (en) 2019-05-14

Family

ID=60175149

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201710677075.7A Expired - Fee Related CN107314815B (en) 2017-08-09 2017-08-09 Ultraviolet intensity monitoring method and system and mobile terminal

Country Status (1)

Country Link
CN (1) CN107314815B (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107978074A (en) * 2017-12-26 2018-05-01 广东省生态气象中心(珠江三角洲环境气象预报预警中心) Suncream vending machine and selling system
CN112345211A (en) * 2020-11-04 2021-02-09 北京金和网络股份有限公司 Ultraviolet lamp replacement reminding method, device and system

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2372676Y (en) * 1999-05-14 2000-04-05 拓技科技股份有限公司 Ultraviolet radiation intensity indicator
US20080246950A1 (en) * 2007-04-06 2008-10-09 Hiroaki Ono Device, Method, and Program for Estimating Light Source
CN201281630Y (en) * 2008-10-17 2009-07-29 华南师范大学 Detection device for solar light ultraviolet strength
CN101825490A (en) * 2009-03-06 2010-09-08 晨星软件研发(深圳)有限公司 Ultraviolet ray detection system and method
CN201682545U (en) * 2010-05-15 2010-12-22 广东步步高电子工业有限公司 Mobile phone capable of detecting sunlight ultraviolet ray intensity
CN105054505A (en) * 2015-07-08 2015-11-18 努比亚技术有限公司 Smart bracelet and ultraviolet detection method
CN205849012U (en) * 2016-07-28 2017-01-04 京东方科技集团股份有限公司 Portable sun-proof frost uses equipment

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2372676Y (en) * 1999-05-14 2000-04-05 拓技科技股份有限公司 Ultraviolet radiation intensity indicator
US20080246950A1 (en) * 2007-04-06 2008-10-09 Hiroaki Ono Device, Method, and Program for Estimating Light Source
CN201281630Y (en) * 2008-10-17 2009-07-29 华南师范大学 Detection device for solar light ultraviolet strength
CN101825490A (en) * 2009-03-06 2010-09-08 晨星软件研发(深圳)有限公司 Ultraviolet ray detection system and method
CN201682545U (en) * 2010-05-15 2010-12-22 广东步步高电子工业有限公司 Mobile phone capable of detecting sunlight ultraviolet ray intensity
CN105054505A (en) * 2015-07-08 2015-11-18 努比亚技术有限公司 Smart bracelet and ultraviolet detection method
CN205849012U (en) * 2016-07-28 2017-01-04 京东方科技集团股份有限公司 Portable sun-proof frost uses equipment

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107978074A (en) * 2017-12-26 2018-05-01 广东省生态气象中心(珠江三角洲环境气象预报预警中心) Suncream vending machine and selling system
CN107978074B (en) * 2017-12-26 2024-06-07 广东省生态气象中心(珠江三角洲环境气象预报预警中心) Sunscreen vending machine and vending system
CN112345211A (en) * 2020-11-04 2021-02-09 北京金和网络股份有限公司 Ultraviolet lamp replacement reminding method, device and system

Also Published As

Publication number Publication date
CN107314815B (en) 2019-05-14

Similar Documents

Publication Publication Date Title
KR102392113B1 (en) Electronic device and method for processing voice command thereof
KR102361814B1 (en) Electronic apparatus and method for providing information for avoiding ultraviolet
CN108391239A (en) Method for providing notice and electronic equipment
KR102372072B1 (en) Method for selection of transmission Antenna and electronic device supporting the same
CN110192248A (en) Voice input processing method and electronic equipment for supporting this method
CN106066758A (en) Electronic equipment and control method thereof for display screen
CN107528618A (en) Electronic installation of the switching antenna to reduce the method for specific absorption rate and support this method
CN107800455A (en) Electronic installation and its gripping recognition methods
CN107924216A (en) Foldable electronic and its method for information display including hiding display
KR20180091589A (en) Method for providing skin information and electronic device supporting the same
CN107852437A (en) Method and apparatus for exporting audio in the electronic device
KR20170105272A (en) Display including sensing function and electronic device having the same
CN106886385A (en) Method and apparatus for providing the user interface of electronic equipment
CN107884068A (en) Spectroscopic assay sensing device further and its method in electronic equipment
CN105078409A (en) Information management method and electronic device
CN107796512A (en) The method of electronic equipment and operation electronic equipment with display and sensor
CN107925749A (en) Method and apparatus for the resolution ratio for adjusting electronic equipment
CN108028891A (en) Electronic equipment and photographic means
CN107085462A (en) For managing the electronic equipment of electric power and controlling its method
US11060904B2 (en) Electronic device and ultraviolet light measuring method therefor
CN109937595A (en) For determining the electronic device and method of position
CN108694032A (en) Use the picture outputting method of external equipment and the electronic equipment for supporting it
CN110325993A (en) The electronic equipment and its operating method of certification are executed by using multiple biometric sensors
KR20170019806A (en) Method and apparatus for providing location information
CN109890266B (en) Method and apparatus for obtaining information by capturing eye

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
CB02 Change of applicant information
CB02 Change of applicant information

Address after: 523841 No. 18, Wu Sha Beach Road, Changan Town, Dongguan, Guangdong

Applicant after: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS Corp.,Ltd.

Address before: 523841 No. 18, Wu Sha Beach Road, Changan Town, Dongguan, Guangdong

Applicant before: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS Corp.,Ltd.

GR01 Patent grant
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20190514