This paper presents a wearable piezoelectric generator in order to explore the possibility of harvesting energy from human motion to supply power for wearable or portable electronics, thus acting as alternatives to th...
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This paper presents a wearable piezoelectric generator in order to explore the possibility of harvesting energy from human motion to supply power for wearable or portable electronics, thus acting as alternatives to the use of *** generator is characterized by a high durability and portability, which is thin enough to be placed in a shoe or a bag *** prototypes has been built and tested both by a material testing system (MTS) and by human motion during walking at 1 *** prototype enables a mean output power of 1 mW, namely 1 mJ per *** seems that the generator cannot provide sufficient energy to run electronics continuously, therefore two methods are proposed to make the generator compatible with *** work demonstrates the feasibility of harvesting the mechanical energy dissipated in human motion for powering low-power electronics.
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