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A hybrid power delivery method for asynchronous loads in energy harvesting systems

机译:能量收集系统中异步负载的混合动力传递方法

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Energy harvesting is becoming popular for small systems such as micro-sensors or medical implantable devices, which may not need or be able to include large energy storage devices. However power from energy harvesting circuits may be very limited and vary within a large range. Therefore an on-chip intelligent and flexible power delivery method bypassing external energy storage devices and corresponding charging circuits may be advantageous. Also, different computation loads may tolerate different degrees of variance in the supplied VDD. Thus, a hybrid power delivery method fully behaving as switched capacitor dc-dc converter or capacitor bank block to generate stable or variable power supply is developed to cope with variable harvested energy. The method is verified by hardware, which has been employed for VLSI chip testing. It can be considered as a valuable reference for later on-chip fabrication and task & power scheduling research.
机译:对于小型系统,例如微传感器或医疗可植入设备,能量收集正变得越来越普遍,这些小型系统可能不需要或无法包括大型能量存储设备。然而,来自能量收集电路的功率可能非常有限并且在很大范围内变化。因此,绕过外部能量存储设备和相应的充电电路的片上智能且灵活的功率输送方法可能是有利的。同样,不同的计算负载可能会容忍所提供的VDD中的变化程度不同。因此,开发了一种完全表现为开关电容器dc-dc转换器或电容器组模块以产生稳定或可变电源的混合功率传输方法,以应对可变的收获能量。该方法已通过硬件验证,已用于VLSI芯片测试。它可以被认为是以后的片上制造以及任务和功率调度研究的宝贵参考。

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