Internet of Things (IoT) is a cyber-physical architecture bringing a new revolution by developing an intelligent environment and incorporating trillions of sensing, processing, and transmission units. Due to battery energy constraints, it is critical to sustain many IoT devices’ network operations in diverse applications of weather monitoring, smart agriculture etc. In this regard, solar energy harvesting has emerged as a potential solution in developing a net-zero energy IoT (NZ-IoT) architecture to quantify sustainability. For NZ-IoT, this article examines the practical viability of a solar energy harvesting model for empirically characterizing the solar panel dimension (PD) in cm2 and panel outlay (PO) in INR (Indian Rupee). Furthermore, the sensing outlay and processing outlay (which include both the memory and transmission outlay of sensed data) are also determined. It is accomplished by first developing an IoT-based consumption model and then establishing an empirical relationship between panel dimension and panel outlay. Finally, the simulation results of solar panel dimensions and outlay are computed for a net-zero energy IoT system.
Empirical Characterization of Solar Panel Outlay and Dimension for Net-Zero Energy IoT System
01.09.2022
1371933 byte
Aufsatz (Konferenz)
Elektronische Ressource
Englisch
Milwaukee modernizes station at moderate outlay
Engineering Index Backfile | 1937
Maintenance outlay at new high
Engineering Index Backfile | 1945
|Upkeep outlay and costs show increase
Engineering Index Backfile | 1948
|Outlay for maintenance of way largest since 1931
Engineering Index Backfile | 1936
|Outlay Rates and the Politics of Capital versus Operating Subsidies in Federal Transit Finance
British Library Conference Proceedings | 1998
|