首页> 外文期刊>Embedded Systems Letters, IEEE >Mitigating Interactive Performance Degradation From Mobile Device Thermal Throttling
【24h】

Mitigating Interactive Performance Degradation From Mobile Device Thermal Throttling

机译:从移动设备的互动性能下降,从移动设备热节流

获取原文
获取原文并翻译 | 示例

摘要

Mobile devices are limited in mass and volume, reducing the viability of active device cooling implementations. This requires the use of less effective passive techniques to maintain device skin temperature levels. Application performance demands on a modern mobile device are driven by sustained performance workloads, such as 3-D games, virtual, and augmented reality. Mobile system-on-chips (SoCs) have corresponding increases in performance through both architectural changes and frequency of operation increases, which has resulted in the peak power consumption exceeding the sustainable thermal envelope defined by device skin temperature requirements. Existing thermal throttling techniques mitigate this by capping the frequency of operation of the SoC. Through experimentation with a modern smartphone platform using sequences from real-world applications, we demonstrate in this letter that frequency capping (FC) can have a significant effect on the performance of interactive applications, increasing the number of frame rate defects by up to 146%. We propose task utilization scaling, a new lever for thermal throttling, which scales performance for critical interactive periods by the same factor as noncritical periods. Experiments demonstrate that the proposed approach can result in a decrease in frame rate defects of up to 18% compared with FC or a skin temperature reduction of up to 2 degrees C.
机译:移动设备受到质量和体积的限制,降低了有源器件冷却实现的可行性。这需要使用较少的有效的被动技术来维持设备皮肤温度水平。现代移动设备上的应用程序性能需求由持续性能工作负载驱动,例如3-D游戏,虚拟和增强现实。移动系统上芯片(SOC)通过架构变化和操作频率的性能具有相应的性能,这导致峰值功耗超过由设备皮肤温度要求定义的可持续热包络。现有的热节流技术通过覆盖SOC的操作频率来减轻这一点。通过使用现代智能手机平台的实验,使用现实世界应用程序的序列,我们在这封信中展示了频率封盖(FC)对交互式应用的性能有显着影响,将帧率缺陷的数量增加到146% 。我们提出了任务利用率缩放,新杆用于热压,这使得关键交互时段的性能与非关键时段相同的因素。实验表明,与FC或皮肤温度降低最多2℃,所提出的方法可导致帧速率缺陷的降低至多18%。

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