首页> 外文会议>IEEE Real-Time Systems Symposium >RT-IFTTT: Real-Time IoT Framework with Trigger Condition-Aware Flexible Polling Intervals
【24h】

RT-IFTTT: Real-Time IoT Framework with Trigger Condition-Aware Flexible Polling Intervals

机译:RT-IFTTT:具有触发条件感知能力的灵活轮询间隔的实时物联网框架

获取原文

摘要

With a simple “If This Then That” syntax, IoT frameworks such as IFTTT and Microsoft Flow allow users to easily create custom applets integrating sensors and actuators. Users expect appropriate actions to be taken within a certain latency in response to sensor value changes while the sensors usually have limited battery power. Therefore, reading the sensor values at the right time point is crucial for the IoT frameworks to support real-time responses of the applets while saving battery lives of sensors. However, existing IoT frameworks periodically read the sensor data with fixed intervals without reflecting current sensor values and trigger conditions of applets, so the intervals are either too long to meet the real-time constraints, or too short wasting batteries of sensors. This work extends the existing IFTTT syntax for users to describe real-time constraints, and proposes the first real-time IoT framework with trigger condition-aware flexible polling intervals, called RT-IFTTT. RT-IFTTT analyzes current sensor values, trigger conditions and constraints of all the applets in the framework, and dynamically calculates the efficient polling intervals for each sensor. This work collects real-world sensing data from 10 physical sensors for 10 days, and shows that the RT-IFTTT framework with the proposed scheduling algorithm executes 100 to 400 applets according to user-defined real-time constraints with up to 64.12% less sensor polling counts compared to the framework with the fixed intervals.
机译:借助简单的“ If This Then That”语法,诸如IFTTT和Microsoft Flow之类的IoT框架允许用户轻松创建集成了传感器和执行器的自定义小程序。用户期望在一定的延迟内采取适当的措施以响应传感器值的变化,而传感器通常电池电量有限。因此,在正确的时间点读取传感器值对于IoT框架支持小程序的实时响应,同时节省传感器的电池寿命至关重要。但是,现有的物联网框架会以固定的时间间隔定期读取传感器数据,而不会反映当前的传感器值和小应用程序的触发条件,因此时间间隔太长而无法满足实时限制,或者浪费的传感器电池太短。这项工作扩展了现有的IFTTT语法,以供用户描述实时约束,并提出了第一个具有触发条件感知灵活轮询间隔的实时IoT框架,称为RT-IFTTT。 RT-IFTTT分析当前传感器值,触发条件和框架中所有小程序的约束,并动态计算每个传感器的有效轮询间隔。这项工作从10个物理传感器收集了10天的真实感测数据,并显示带有建议的调度算法的RT-IFTTT框架可以根据用户定义的实时约束执行100到400个小程序,最多可减少64.12%传感器轮询计数与固定间隔的框架相比。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号