CN104063304B - Application software energy consumption ranking method oriented to mobile intelligent terminal application market - Google Patents

Application software energy consumption ranking method oriented to mobile intelligent terminal application market Download PDF

Info

Publication number
CN104063304B
CN104063304B CN201410312340.8A CN201410312340A CN104063304B CN 104063304 B CN104063304 B CN 104063304B CN 201410312340 A CN201410312340 A CN 201410312340A CN 104063304 B CN104063304 B CN 104063304B
Authority
CN
China
Prior art keywords
application software
energy consumption
software
application
intelligent terminal
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.)
Active
Application number
CN201410312340.8A
Other languages
Chinese (zh)
Other versions
CN104063304A (en
Inventor
崔勇
朱超
肖诗汉
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.)
Tsinghua University
Original Assignee
Tsinghua University
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 Tsinghua University filed Critical Tsinghua University
Priority to CN201410312340.8A priority Critical patent/CN104063304B/en
Publication of CN104063304A publication Critical patent/CN104063304A/en
Application granted granted Critical
Publication of CN104063304B publication Critical patent/CN104063304B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D10/00Energy efficient computing, e.g. low power processors, power management or thermal management

Abstract

An application software energy consumption ranking method oriented to mobile intelligent terminal application market comprises the steps: first, measuring consumed energy of which has already hit the shelves in each type according to the classification of application software and setting the energy saving grade of each application, second, measuring the energy consumption of the application software to hit the shelves according to the type of the application software to hit the shelves, determining the energy saving grade of the application software in the applications of the same type. The application software energy consumption ranking method provides application software energy saving dividing grades for the mobile intelligent terminal application market, energy saving grade information of the application software provided by the mobile intelligent terminal application market can serve as one of the criteria for selection of users, and developers are stimulated to pay more attention to energy consumption performance of the application software, so that the overall developing level and user experience of the application software in the application market are improved.

Description

A kind of application software energy consumption ranking method towards mobile intelligent terminal application market
Technical field
The invention belongs to mobile intelligent terminal application software technology field, should towards mobile intelligent terminal particularly to one kind Application software energy consumption ranking method with market.
Background technology
Since two thousand and ten, with the Android operation system of Google, the ios system of Apple and Microsoft Operating system based on windows phone is almost united and be account for whole mobile intelligent terminal market.Applied software market (app Store) as an important mark of intelligent operating system, it is known to vast mobile intelligent terminal user and to use.
Existing applied software market mainly have the itunes store of Apple, the Android market of Google and The application shop of Microsoft.Synopsis, the work(of application software typically can be displayed for a user out in these applied software markets The information such as energy, software information and developer.Wherein software information generally comprise software developer, category of software, more redaction, Size etc..Mobile intelligent terminal user can select according to the application software information that application software provides and the demand of oneself Download the application software needing.
Nowadays, mobile intelligent terminal is extensively used by people, but the battery life of mobile intelligent terminal is it all the time to be made Bottleneck with experience.In hardware aspect, the hardware technology of the energy consumption module such as screen display, cpu calculating and battery energy storage density is sent out Exhibition has arrived at a bottleneck;And the application software in software aspects, intelligent terminal is also consuming intelligent movable eventually in a large number The valuable power resources in end.At present, the application software added in applied software market is ten hundreds of, and generic software also tends to Even tens of kinds of more than ten kind can be reached.The function that these application software are realized is approximate, but its electricity consuming but has Very big gap.For example it is all weather forecast software, ink marks weather is more far short of what is expected than Yahoo weather in terms of energy optimization.And mesh Front applied software market does not provide the user the information of application software energy consumption aspect.
Content of the invention
In order to overcome the shortcoming of above-mentioned prior art, it is an object of the invention to provide one kind should towards mobile intelligent terminal With the application software energy consumption ranking method in market, according to the classification of application software, measure the energy consumption condition of this application software, measure Power Saving Class in generic application for this application software.
To achieve these goals, the technical solution used in the present invention is:
A kind of application software energy consumption ranking method towards mobile intelligent terminal application market, comprising:
First, according to the classification of application software, it is all application software evaluations in frame in intelligent terminal applied software market Power Saving Class, specifically comprises the following steps that
Step 1.1, selects all of a classification to measure in frame application software;
Step 1.2, an application software selecting selected classification is installed on intelligent terminal or intelligent terminal simulator;
Step 1.3, energy consumption measurement equipment is connected to the both positive and negative polarity of intelligent terminal, opens application software persistently little using 1 When, record the Energy in use eu of this application software, then application software is set to holding state, continue 1 hour, record this application The standby energy consumption ei of software;
Step 1.4, according to the process of step 1.2~1.3, has tested selected classification all in applied software market one by one Application software, draw the Energy in use eu and standby energy consumption ei of each application software, by Energy in use eu and standby energy consumption ei Sum is as energy consumption weight e of this application software;
Step 1.5, finds out minimum energy consumption mine of application software of energy consumption weight and energy consumption under the type in the set of e Energy consumption maxe of the maximum application software of weight, the Power Saving Class elevel of the application for mine for the energy consumption is set to five-pointed star, energy consumption Application energy consumption grade elevel for maxe is set to a star;
Step 1.6, calculates the differential d of energy consumption, d=(maxe-mine)/n × 4;
Step 1.7, the Power Saving Class elevel of each application software under classification selected by calculating, with energy consumption mine as radix, If difference d of an application software energy consumption and mine is less than d, Power Saving Class is set to five-pointed star;If greater than d, then elevel =5-d/d;
Step 1.8, draws the Power Saving Class in frame application in all categories in application market according to step 1.1~1.7;
Secondly, according to the type being intended to added application software, for preparing added application software evaluation Power Saving Class, concrete step Suddenly as follows:
Step 2.1, determines, according to the information that applied software development person provides, the generic being intended to added application software;
Step 2.2, affiliated application software is arranged on intelligent sliding moved end or intelligent terminal simulator, opens application soft Part, confirms whether software content is consistent with the software information that developer is provided, if do not corresponded, modification is intended to added software Generic;
Step 2.3, energy consumption measurement equipment is connected to the both positive and negative polarity of intelligent terminal, opens application software persistently little using 1 When, record the Energy in use eu of this application software, then application software is set to holding state, continue 1 hour, record this application The standby energy consumption ei of software, using Energy in use eu and standby energy consumption ei sum as this application software energy consumption weight e;
Step 2.4, is intended to energy consumption weight e of added application software and maximum energy consumption weight maxe of generic and minimum Energy consumption weight mine is made comparisons;
Step 2.4a, if e is more than maxe, the Power Saving Class being intended to added application software is set to a star, generic Maximum energy consumption weight maxe is set to e;
Step 2.4b, if e is less than mine, the Power Saving Class being intended to added application software is set to five-pointed star, generic Least energy consumption weight mine is set to e;
Step 2.5, is intended to added software and is changed into added software, using step 1.5~1.7, updates all under generic The Power Saving Class of application software.
Described energy consumption measurement is equipped for power monitor.
Compared with prior art, divide application software section it is contemplated that providing for mobile intelligent terminal applied software market Energy level method for distinguishing.The application software that can be provided according to mobile intelligent terminal applied software market using the present invention, user One of Power Saving Class information standard alternatively.Meanwhile, the present invention also will stimulate developer more to focus on application software Energy consumption and performance, thus lifting overall development level and the Consumer's Experience of application software in application market.
Brief description
Fig. 1 is that the present invention evaluates Power Saving Class assessment method flow chart to the application software in frame.
Fig. 2 is that the present invention evaluates Power Saving Class assessment method flow chart to being intended to added application software.
Specific embodiment
Describe embodiments of the present invention with reference to the accompanying drawings and examples in detail.
A kind of application software energy consumption ranking method towards mobile intelligent terminal application market, is first according to application software Classification, measures the energy consumption condition of added application software under each type and makes the Power Saving Class of every money application.Secondly, According to the type being intended to added application software, measurement is intended to the energy consumption condition of added application software, measures this application software in affiliated class Power Saving Class in type application.
As shown in figure 1, the Power Saving Class evaluation of added application software specifically comprises the following steps that
Step 1.1, selects all of a classification to measure in frame application software;
Step 1.2, an application software selecting selected classification is installed on intelligent terminal or intelligent terminal simulator;
Step 1.3, energy consumption measurement is equipped the both positive and negative polarity that (as power monitor) is connected to intelligent terminal, and opening should Used 1 hour with software continuous, record the Energy in use eu of this application software, then application software is set to holding state, holds Continuous 1 hour, record the standby energy consumption ei of this application software;
Step 1.4, according to the process of step 1.2~1.3, has tested selected classification all in applied software market one by one Application software, draw the Energy in use eu and standby energy consumption ei of each application software, by Energy in use eu and standby energy consumption ei Sum is as energy consumption weight e of this application software;
Step 1.5, finds out minimum energy consumption mine of application software of energy consumption weight and energy consumption under the type in the set of e Energy consumption maxe of the maximum application software of weight, the Power Saving Class elevel of the application for mine for the energy consumption is set to five-pointed star, energy consumption Application energy consumption grade elevel for maxe is set to a star;
Step 1.6, calculates the differential d of energy consumption, d=(maxe-mine)/n × 4;
Step 1.7, the Power Saving Class elevel of each application software under classification selected by calculating, with energy consumption mine as radix, If difference d of an application software energy consumption and mine is less than d, Power Saving Class is set to five-pointed star;If greater than d, then elevel =5-d/d;
Step 1.8, draws the Power Saving Class in frame application in all categories in application market according to step 1.1~1.7.
As shown in Fig. 2 the Power Saving Class evaluation being intended to added application software specifically comprises the following steps that
Step 2.1, determines, according to the information that applied software development person provides, the generic being intended to added application software;
Step 2.2, affiliated application software is arranged on intelligent sliding moved end or intelligent terminal simulator, opens application soft Part, confirms whether software content is consistent with the software information that developer is provided, if do not corresponded, modification is intended to added software Generic;
Step 2.3, energy consumption measurement is equipped the both positive and negative polarity that (as power monitor) is connected to intelligent terminal, and opening should Used 1 hour with software continuous, record the Energy in use eu of this application software, then application software is set to holding state, holds Continuous 1 hour, record the standby energy consumption ei of this application software, using Energy in use eu and standby energy consumption ei sum as this application software Energy consumption weight e;
Step 2.4, is intended to energy consumption weight e of added application software and maximum energy consumption weight maxe of generic and minimum Energy consumption weight mine is made comparisons;
Step 2.4a, if e is more than maxe, the Power Saving Class being intended to added application software is set to a star, generic Maximum energy consumption weight maxe is set to e;
Step 2.4b, if e is less than mine, the Power Saving Class being intended to added application software is set to five-pointed star, generic Least energy consumption weight mine is set to e;
Step 2.5, is intended to added software and is changed into added software, using step 1.5~1.7, updates all under generic The Power Saving Class of application software.
Using said method, energy-conservation grading is carried out to weather forecast software ink marks weather and Yahoo's weather, draw Yahoo's weather For four stars, and ink marks weather is only two stars it is known that ink marks weather is more far short of what is expected than Yahoo weather in terms of energy optimization, and in reality In the application of border, also the way it goes, illustrates that, according to scheme provided by the present invention, mobile intelligent terminal applied software market can be User provides similar applications below software energy consumption information.

Claims (2)

1. a kind of application software energy consumption ranking method towards mobile intelligent terminal application market it is characterised in that:
First, according to the classification of application software, it is all application software evaluation energy-conservations in frame in intelligent terminal applied software market Grade, specifically comprises the following steps that
Step 1.1, selects all of a classification to measure in frame application software;
Step 1.2, an application software selecting selected classification is installed on intelligent terminal or intelligent terminal simulator;
Step 1.3, energy consumption measurement equipment is connected to the both positive and negative polarity of intelligent terminal, opens application software persistently using 1 hour, note Record the Energy in use eu of this application software, then application software is set to holding state, continue 1 hour, record this application software Standby energy consumption ei;
Step 1.4, according to the process of step 1.2~1.3, tested one by one selected classification in applied software market all of should With software, draw the Energy in use eu and standby energy consumption ei of each application software, by Energy in use eu and standby energy consumption ei sum Energy consumption weight e as this application software;
Step 1.5, finds out minimum energy consumption mine of application software of energy consumption weight and energy consumption weight under the category in the set of e Energy consumption maxe of maximum application software, the Power Saving Class elevel of the application for mine for the energy consumption is set to five-pointed star, energy consumption is Application energy consumption grade elevel of maxe is set to a star;
Step 1.6, calculates the differential d of energy consumption, d=(maxe-mine)/4;
Step 1.7, the Power Saving Class elevel of each application software under classification selected by calculating, with energy consumption mine as radix, if Difference d of one application software energy consumption and mine is less than d, then Power Saving Class is set to five-pointed star;If greater than d, then Implication be round downwards;
Step 1.8, draws the Power Saving Class in frame application in all categories in application market according to step 1.1~1.7;
Secondly, according to the classification being intended to added application software, for preparing added application software evaluation Power Saving Class, concrete steps are such as Under:
Step 2.1, determines, according to the information that applied software development person provides, the generic being intended to added application software;
Step 2.2, affiliated application software is arranged on intelligent sliding moved end or intelligent terminal simulator, opens application software, really Recognize whether software content is consistent with the software information that developer is provided, if do not corresponded, modification is intended to the affiliated of added software Classification;
Step 2.3, energy consumption measurement equipment is connected to the both positive and negative polarity of intelligent terminal, opens application software persistently using 1 hour, note Record the Energy in use eu of this application software, then application software is set to holding state, continue 1 hour, record this application software Standby energy consumption ei, using Energy in use eu and standby energy consumption ei sum as this application software energy consumption weight e;
Step 2.4, is intended to energy consumption weight e of added application software and maximum energy consumption weight maxe of generic and least energy consumption Weight mine is made comparisons;
Step 2.4a, if e is more than maxe, the Power Saving Class being intended to added application software is set to a star, the maximum of generic Energy consumption weight maxe is set to e;
Step 2.4b, if e is less than mine, the Power Saving Class being intended to added application software is set to five-pointed star, the minimum of generic Energy consumption weight mine is set to e;
Step 2.5, is intended to added software and is changed into added software, using step 1.5~1.7, updates all applications under generic The Power Saving Class of software.
2. the application software energy consumption ranking method towards mobile intelligent terminal application market according to claim 1, it is special Levy and be, described energy consumption measurement is equipped for power monitor.
CN201410312340.8A 2014-07-02 2014-07-02 Application software energy consumption ranking method oriented to mobile intelligent terminal application market Active CN104063304B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201410312340.8A CN104063304B (en) 2014-07-02 2014-07-02 Application software energy consumption ranking method oriented to mobile intelligent terminal application market

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201410312340.8A CN104063304B (en) 2014-07-02 2014-07-02 Application software energy consumption ranking method oriented to mobile intelligent terminal application market

Publications (2)

Publication Number Publication Date
CN104063304A CN104063304A (en) 2014-09-24
CN104063304B true CN104063304B (en) 2017-01-25

Family

ID=51551026

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201410312340.8A Active CN104063304B (en) 2014-07-02 2014-07-02 Application software energy consumption ranking method oriented to mobile intelligent terminal application market

Country Status (1)

Country Link
CN (1) CN104063304B (en)

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104881362A (en) * 2015-06-18 2015-09-02 广东欧珀移动通信有限公司 Third-party application standby current testing method and device
KR102360178B1 (en) * 2015-08-25 2022-02-08 삼성전자주식회사 System and method for providing application list
CN115576856B (en) * 2022-12-08 2023-04-11 浪潮通信信息系统有限公司 Energy consumption evaluation method and device

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103336493A (en) * 2013-06-03 2013-10-02 天津至勤投资咨询有限公司 An energy management system
CN103701970A (en) * 2013-12-04 2014-04-02 中国科学院深圳先进技术研究院 Power consumption prompting method and device for mobile terminal and mobile terminal

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103336493A (en) * 2013-06-03 2013-10-02 天津至勤投资咨询有限公司 An energy management system
CN103701970A (en) * 2013-12-04 2014-04-02 中国科学院深圳先进技术研究院 Power consumption prompting method and device for mobile terminal and mobile terminal

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
Android应用程序能耗分析与建模研究;段林涛 等;《电子科技大学学报》;20140331;第43卷(第2期);第272-277页 *

Also Published As

Publication number Publication date
CN104063304A (en) 2014-09-24

Similar Documents

Publication Publication Date Title
Yue et al. Measurements of POI-based mixed use and their relationships with neighbourhood vibrancy
CN106650780A (en) Data processing method, device, classifier training method and system
CN105579964B (en) Determine and show the mobile terminal and method of the electrical efficiency of application
CN104965920A (en) Method and apparatus for determining target address
CN104951432B (en) The method and device that a kind of pair of information is handled
CN104392350B (en) A kind of processing method, the device and system of virtual resource data
CN107679189A (en) A kind of point of interest update method, device, server and medium
CN109961296A (en) Merchant type recognition methods and device
CN106104417A (en) Eye-tracking technological improvement is used to provide context data to the equipment of calculating
CN106415470B (en) Multivariate testing of mobile applications
CN105334939B (en) Terminal power consumption control method and device
CN105005563B (en) A kind of abstraction generating method and device
CN104063304B (en) Application software energy consumption ranking method oriented to mobile intelligent terminal application market
Almár et al. The discovery of ETI as a high-consequence, low-probability event
CN107220308B (en) Method, device and equipment for detecting rationality of POI (Point of interest) and readable medium
CN106227743B (en) Advertisement target group touching reaches ratio estimation method and device
US9223468B2 (en) Display apparatus, display method and program
CN107038236A (en) A kind of air quality data visualization system
CN109102332A (en) A kind of method, apparatus and electronic equipment of data processing
CN106528147A (en) Desktop icon display method, desktop icon display device and terminal
CN109635683A (en) Method for extracting content and terminal device in a kind of image
US20170131896A1 (en) Electronic device and method for selecting area associated with content
WO2018010409A1 (en) Power consumption warning method and apparatus
KR20180063538A (en) Method for providing point of interest and electronic device supporting the same
CN106250080A (en) Method for displaying image and device

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant