scholarly journals High Concurrent News Communication Strategy Based on Reliable Routing in Wireless Sensor Networks

2021 ◽  
Vol 2021 ◽  
pp. 1-10
Author(s):  
Cui Yin

Since information sensing transmission is an inherent requirement of wireless sensor networks, this paper analyzes the traditional reliability routing algorithm that treats all data groups indiscriminately and cannot make the data groups containing important information preferentially transmitted to the sink node and consume too much energy on unimportant data. The healthy development of news communication can be promoted from the three aspects of audience supervision, platform control, and government supervision, and a cross-platform operation model can be established to enhance the sociality of the platform and improve new media technologies to achieve accurate push. This paper attempts to sort out the current news and information communication strategies comprehensively from the aspects of content, communication, operation, and profit in the process of news and information communication from production to profit. The communication strategy of news and information communication is highly adaptable to the 4I principle of network marketing. And from the audience supervision, platform control, and government supervision, these three aspects promote the healthy development of news communication news, establish cross-platform operation mode to enhance the sociality of the platform, improve new media technology to achieve accurate push, innovate business model, enhance liquidity, and so on.

2015 ◽  
Vol 2015 ◽  
pp. 1-11
Author(s):  
Sohail Jabbar ◽  
Rabia Iram ◽  
Muhammad Imran ◽  
Awais Ahmad ◽  
Anand Paul ◽  
...  

Network lifetime is one of the most prominent barriers in deploying wireless sensor networks for large-scale applications because these networks employ sensors with nonrenewable scarce energy resources. Sensor nodes dissipate most of their energy in complex routing mechanisms. To cope with limited energy problem, we present EASARA, an energy aware simple ant routing algorithm based on ant colony optimization. Unlike most algorithms, EASARA strives to avoid low energy routes and optimizes the routing process through selection of least hop count path with more energy. It consists of three phases, that is, route discovery, forwarding node, and route selection. We have improved the route discovery procedure and mainly concentrate on energy efficient forwarding node and route selection, so that the network lifetime can be prolonged. The four possible cases of forwarding node and route selection are presented. The performance of EASARA is validated through simulation. Simulation results demonstrate the performance supremacy of EASARA over contemporary scheme in terms of various metrics.


2017 ◽  
Vol 13 (04) ◽  
pp. 45 ◽  
Author(s):  
Liping LV

<p class="0abstract"><span lang="EN-US">Wireless sensor network is a new field of computer science and technology research. It has a very broad application prospects. In order to improve the network survival time, it is very important to design efficient energy-constrained routing protocols. In this paper, we studied the characteristics of wireless sensor networks, and analyzed the design criteria of sensor network routing algorithms. In view of the shortcomings of traditional algorithms, we proposed an energy-aware multi-path algorithm. When selecting a data transmission path, the energy-aware multi-path algorithm can avoid nodes with low energy levels. At the same time, it takes the remaining energy of the node and the number of hops as one of the measures of the path selection. The multi-path routing algorithm realized the low energy consumption of the data transmission path, thus effectively prolonging the network lifetime. Compared with the traditional algorithm, the results show that our method has high reliability and energy efficiency.</span></p>


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