Solar energy harvesting technologies for PV self-powered
In order to present the current state of development and discuss future research directions in the PV self-powered technologies field, this study provides a review of SEH
PV power generation includes PV power generation and grid-connected PV power generation, and the scope of this paper focuses on solar energy harvesting technologies for PV self-powered applications, which belongs to the former scope. There are many studies on PV self-powered technologies, but there has been no review of this field.
However, existing solar tracking systems are costly and complex structure, making them unsuitable for small PV self-powered systems. The cost of solar tracked PV systems include the energy cost of the solar tracking system itself and the monetary cost of the required equipment.
Ageev et al. proposed a hybrid PV-wave energy system to power autonomous underwater vehicles to solve the problem of insufficient range of PV self-powered autonomous underwater vehicles in high latitudes above 60°. The simulation analysis revealed that the best shape for powering autonomous underwater vehicles is wing shapes.
Through the above-mentioned literature, it can be noted that flexible PV panels and TENGs can be used extensively to harvest solar energy and mechanical energy generated by human movement to generate electricity . Fig. 12. Schematic of the self-charging power bracelet. [Reprinted (adapted) with permission from Ref. . Fig. 13.
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