基于DEMATEL方法的基于android的移动设备节能框架

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App Standby takes this further by putting apps into a low-power state when they aren't actively used, reducing their impact on battery life. Background Execution Limits: Android limits background execution of apps to prevent unnecessary battery drain. Apps can only run background tasks within specific restrictions, ensuring that they don't continuously consume resources. JobScheduler: This framework allows apps to schedule tasks at optimal times, which can help consolidate tasks and reduce the frequency of waking up the device, thus saving power. Battery Optimization: Android provides a battery optimization feature that allows users to prioritize apps and restrict background activity for specific apps, helping to save power. Location Services: Managing location updates efficiently can significantly impact battery life. Using lower accuracy settings or batching location updates can reduce the power consumed by location services. Wakelocks and Alarms: Developers can use wakelocks and alarms to keep the device awake for specific tasks. However, these should be used judiciously, as they can lead to increased power consumption if not managed properly. Optimized Networking: Using techniques like Volley or OkHttp for efficient network requests, and optimizing the use of background data syncing, can help reduce power consumption. Background Syncing: DEMATEL is widely accepted for analyzing the overall relationship of factors and classifying factors into cause-and-effect types. Therefore, this article considers each source as a criterion in decision-making. To deal with a mixture of conflicting evidence, the significance and level of significance of each piece of evidence can be determined using DEMATEL; however, expanding the DEMATEL method with the source theory is required for better conclusions. Screen brightness & colour scheme, CPU frequency, Network, Low power localization and Wi-Fi. 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引用次数: 1

摘要

基于android的省电框架”,这是普遍认可的。但是,我可以为您提供有关目前为止Android开发中常用的节能技术和策略的信息。请记住,事态发展可能发生在2021年9月之后。Android设备以其多功能性和功能丰富的环境而闻名,但这可能以增加功耗为代价。为了缓解这个问题,开发人员和设备制造商采用了各种节能技术和框架。以下是一些常见的策略和框架:休眠模式和应用待机:Android引入了休眠模式,当设备空闲时,它可以通过延迟后台CPU和网络活动来节省电池寿命。应用待机模式则更进一步,当应用不活跃使用时,它会将应用置于低功耗状态,减少对电池寿命的影响。后台执行限制:Android限制应用程序的后台执行,以防止不必要的电池消耗。应用程序只能在特定的限制下运行后台任务,以确保它们不会持续消耗资源。JobScheduler:这个框架允许应用程序在最佳时间安排任务,这可以帮助合并任务并减少唤醒设备的频率,从而节省电力。电池优化:Android提供了电池优化功能,允许用户对应用程序进行优先排序,并限制特定应用程序的后台活动,有助于节省电力。位置服务:有效地管理位置更新会显著影响电池寿命。使用较低精度设置或批量位置更新可以减少位置服务消耗的电量。唤醒和警报:开发人员可以使用唤醒和警报来保持设备在执行特定任务时处于清醒状态。但是,应该谨慎地使用它们,因为如果管理不当,它们可能会导致功率消耗增加。优化的网络:使用诸如Volley或OkHttp之类的技术来实现高效的网络请求,并优化后台数据同步的使用,可以帮助降低功耗。背景同步:DEMATEL被广泛接受,用于分析因素的整体关系,并将因素划分为因果类型。因此,本文将每个来源视为决策的标准。为了处理相互矛盾的证据,可以使用DEMATEL来确定每个证据的显著性和显著性水平;然而,为了得到更好的结论,需要用源理论扩展DEMATEL方法。屏幕亮度和配色方案,CPU频率,网络,低功耗定位和Wi-Fi。在屏幕亮度和配色方案中,使用DEMATEL的基于android的节能框架排名第一,而CPU频率排名最低。
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Android-Based Power-Saving Framework for Mobile Devices Using the DEMATEL Method
Android-based power-saving framework" that is universally recognized. However, I can provide you with information about power-saving techniques and strategies commonly used in Android development up to that point. Keep in mind that developments might have occurred after September 2021. Android devices are known for their versatility and feature-rich environment, but this can come at the cost of increased power consumption. To mitigate this issue, developers and device manufacturers have employed various power-saving techniques and frameworks. Here are some common strategies and frameworks: Doze Mode and App Standby: Android introduced Doze Mode, which helps conserve battery life by delaying background CPU and network activity when a device is idle. App Standby takes this further by putting apps into a low-power state when they aren't actively used, reducing their impact on battery life. Background Execution Limits: Android limits background execution of apps to prevent unnecessary battery drain. Apps can only run background tasks within specific restrictions, ensuring that they don't continuously consume resources. JobScheduler: This framework allows apps to schedule tasks at optimal times, which can help consolidate tasks and reduce the frequency of waking up the device, thus saving power. Battery Optimization: Android provides a battery optimization feature that allows users to prioritize apps and restrict background activity for specific apps, helping to save power. Location Services: Managing location updates efficiently can significantly impact battery life. Using lower accuracy settings or batching location updates can reduce the power consumed by location services. Wakelocks and Alarms: Developers can use wakelocks and alarms to keep the device awake for specific tasks. However, these should be used judiciously, as they can lead to increased power consumption if not managed properly. Optimized Networking: Using techniques like Volley or OkHttp for efficient network requests, and optimizing the use of background data syncing, can help reduce power consumption. Background Syncing: DEMATEL is widely accepted for analyzing the overall relationship of factors and classifying factors into cause-and-effect types. Therefore, this article considers each source as a criterion in decision-making. To deal with a mixture of conflicting evidence, the significance and level of significance of each piece of evidence can be determined using DEMATEL; however, expanding the DEMATEL method with the source theory is required for better conclusions. Screen brightness & colour scheme, CPU frequency, Network, Low power localization and Wi-Fi. Rank using the DEMATEL for Android-based power-saving framework in Screen brightness & colour scheme is got the first rank whereas is the CPU frequency is having the Lowest rank.
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