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- W4319993350 abstract "Zigbee is a short-range wireless communication standard that is based on IEEE 802.15.4 and is vastly used in both indoor and outdoor Internet of Things (IoT) applications. One of the basic constraints of Zigbee and similar wireless sensor networks (WSN) standards is limited power source as in most of the cases they are battery powered. Thus, it is very important to optimize the energy consumption to have a good network lifetime. Even though tuning the power transmission level to a lower value might make the network more energy efficient, it also hampers the network performances very badly. This work aims to optimize the energy consumption by finding the right balance and trade-off between the transmission power level and network performance through extensive experimental analysis. Packet delivery ratio (PDR) is taken into account for evaluating the network performance. This work also presents a performance analysis of both the encrypted and unencrypted Zigbee with the stated metrics in a real-world testbed, deployed in both indoor and outdoor scenarios. The major contribution of this work includes (i) to optimize the energy consumption by evaluating the most optimized transmission power level of Zigbee where the network performance is also good in terms of PDR (ii) identifying and quantizing the trade-offs of PDR, transmission power levels, current and energy consumption (iii) creating an indoor and outdoor Zigbee testbed based on commercially available Zigbee module XBee S2C to perform any sort of extensive performance analysis." @default.
- W4319993350 created "2023-02-11" @default.
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- W4319993350 date "2023-01-01" @default.
- W4319993350 modified "2023-09-27" @default.
- W4319993350 title "Energy Consumption Optimization of Zigbee Communication: An Experimental Approach with XBee S2C Module" @default.
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- W4319993350 doi "https://doi.org/10.1007/978-981-19-7528-8_41" @default.
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