Cost-Efficient Scheme for RF-Powered Sensor Networks by Mixing Mobile Charging and Static Charging

Author(s):  
Yinan Zhu
2018 ◽  
Vol 7 (3.6) ◽  
pp. 281
Author(s):  
J Srirampavan

Embedded systems in Agriculture play a vital role in unifying the work involved and improve conservations. Designing a smart as well as a cost efficient and more user-friendly system will be idealistic challenge. The following system that has been proposed is designed with those ideal constraints in mind. It consists of a Raspberry pi3 as a gateway that links the sensor networks with the cloud. To improve security an MQTT protocol is used for cloud connectivity. The communication between the sensor networks is managed by NRF24L01. The Sensor network is a separate entity that can used like a plug and play device and is built by a micro controller with a LCD display and an interfaced GPS. Multicasting is also possible between sensor networks and the gateway. The processed data from the sensor networks is sent through NRF24L01 to the gateway. The gateway further processes and encapsulates the data and through MQTT the data gets stored on the cloud. This cloud data can be accessed through computer or mobile device  


SIMULATION ◽  
2008 ◽  
Vol 84 (2-3) ◽  
pp. 131-146 ◽  
Author(s):  
Chandrasekar Ramachandran ◽  
Mohammad S. Obaidat ◽  
Sudip Misra ◽  
Feniosky Peña-Mora

2013 ◽  
Vol 2013 ◽  
pp. 1-12 ◽  
Author(s):  
Hongju Cheng ◽  
Yongzhao Chen ◽  
Naixue Xiong ◽  
Feifei Li

Due to the similarity and correlation among sensed data in wireless sensor network, it is an important way to reduce the number of packets transmitted with data aggregation technology so as to prolong the network lifetime. However, data aggregation is still a challenging issue since quality-of-service, such as end-to-end delay, is generally considered as a severe criterion required in many applications. We focus on the minimum-latency data aggregation problem and proposed a new efficient scheme for it. The basic idea is that we first build an aggregation tree by ordering nodes into layers, and then we proposed a scheduling algorithm on the basis of the aggregation tree to determine the transmission time slots for all nodes in the network with collision avoiding. We have proved that the upper bound for data aggregation with our proposed scheme is bounded by(15R+Δ-15)for wireless sensor networks in two-dimensional space. Extensive simulation results have demonstrated that the proposed scheme has better practical performance compared with related works.


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