Low-Power Multi-Sensor System with Power Management and Nonvolatile Memory Access Control for IoT Applications

Masanori Hayashikoshi;Hideyuki Noda;Hiroyuki Kawai;Yasumitsu Murai;Sugako Otani;Koji Nii;Yoshio Matsuda;Hiroyuki Kondo
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引用次数: 6

Abstract

The low-power multi-sensor system with power management and nonvolatile memory access control for IoT applications are proposed, which achieves almost zero standby power at the no-operation modes. A power management scheme with activity localization can reduce the number of transitions between power-on and power-off modes with rescheduling and bundling task procedures. In addition, autonomously standby mode transition control selects the optimum standby mode of microcontrollers, reducing total power consumption. We demonstrate with evaluation board as a use case of IoT applications, observing 91 percent power reductions by adopting task scheduling and autonomously standby mode transition control combination. Furthermore, we propose a new nonvolatile memory access control technology, and estimate the possibility for future low-power effect.
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物联网应用中具有电源管理和非易失性存储器访问控制的低功耗多传感器系统
提出了一种用于物联网应用的具有电源管理和非易失性存储器访问控制的低功耗多传感器系统,该系统在无操作模式下几乎实现零待机功率。具有活动本地化的电源管理方案可以通过重新调度和捆绑任务过程来减少通电和断电模式之间的转换次数。此外,自主待机模式转换控制选择微控制器的最佳待机模式,降低总功耗。我们将评估板作为物联网应用的用例进行了演示,通过采用任务调度和自主待机模式转换控制组合,观察到91%的功耗降低。此外,我们提出了一种新的非易失性存储器访问控制技术,并估计了未来低功耗效应的可能性。
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