Research
‘3⁄4 Law ‘ Revisited in Allometry
The success of ¾ law in allometry has been entirely due to the uncanny fitting to the datasets. But on the contrary, the proof of ¾ factor seemed to elude rather than more convincing 2/3 law seemed to be prevalent. In this communication based on recent findings due to Opto Droplet tool shows the reincarnation of the ¾ law. The analysis is based on the hypothesis of Dynamic Biological Mass and Real Biological Mass rather than simple biological mass. It can be seen that this hypothesis can lead to the distinction between malicious growth and good growth.
Introducing Connected Dominating Set as Selection Feature of Cluster Heads in Hierarchical Protocols of Wireless Sensor Networks
It has been found that almost all routing protocols do suffer from efficiency of its operation regarding data transfer from one point to another. To overcome this process algorithm regarding the choice of nodes as cluster heads has to be done with utmost care. Failing of this leads to unnecessary dissipation of energy such as generating excess ‘Hello’ messages and less useful data transfer. In this communication we show that the introduction of connected dominating set as one of the metric regarding the choice of cluster head leads to better data transfer and energy consumption. Moreover we implemented this concept in LEACH protocol and found acceptable improvement in the performance parameters of the protocol.
