Robustness in wireless sensor networks (WSNs) is a critical factor that largely depends on their network topology and on how devices can react to disruptions, including node and link failures. This article presents a novel solution to obtain robust WSNs by exploiting principles of biological robustness at nanoscale. Specifically, we consider Gene Regulatory Networks (GRNs) as a model for the interaction between genes in living organisms. GRNs have evolved over millions of years to provide robustness against adverse factors in cells and their environment. Based on this observation, we apply a method to build robust WSNs, called bio-inspired WSNs, by establishing a correspondence between the topology of GRNs and that of already-deployed WSNs....
<div><p>Design and implementation of robust network modules is essential for construction of complex...
The book presents the challenges inherent in the paradigm shift of network systems from static to hi...
The advent of the edge computing network paradigm places the computational and storage resources awa...
Gene Regulatory Networks (GRNs) represent the interactions of genes in living organisms, which have ...
International audienceMinimal energy consumption and maximal event detection rate are among the main...
With the advent of Internet of Things (IoT), sensor networks are being utilized widely for data coll...
Wireless sensor networks (WSNs) are frameworks for modern pervasive computing infrastructures, and a...
Gene Regulatory Networks (GRNs) are biological networks that have been widely studied for their abil...
The innate resilience of biological organisms have long inspired the design of robust systems. Gene ...
Biological networks are known to be robust despite signal disruptions such as gene failures and pert...
Gene regulatory networks (GRNs) involve the interactions of proteins in collections of DNA segments....
Khan, S.; Lloret, J.; Macías López, E. (2015). Bio-Inspired Mechanisms in Wireless Sensor Networks. ...
Network robustness is an important principle in biology and engineering. Previous studies of global ...
Abstract-Exploring the symbiotic nature of biological systems can result in valuable knowledge for c...
Design and implementation of robust network modules is essential for construction of complex biologi...
<div><p>Design and implementation of robust network modules is essential for construction of complex...
The book presents the challenges inherent in the paradigm shift of network systems from static to hi...
The advent of the edge computing network paradigm places the computational and storage resources awa...
Gene Regulatory Networks (GRNs) represent the interactions of genes in living organisms, which have ...
International audienceMinimal energy consumption and maximal event detection rate are among the main...
With the advent of Internet of Things (IoT), sensor networks are being utilized widely for data coll...
Wireless sensor networks (WSNs) are frameworks for modern pervasive computing infrastructures, and a...
Gene Regulatory Networks (GRNs) are biological networks that have been widely studied for their abil...
The innate resilience of biological organisms have long inspired the design of robust systems. Gene ...
Biological networks are known to be robust despite signal disruptions such as gene failures and pert...
Gene regulatory networks (GRNs) involve the interactions of proteins in collections of DNA segments....
Khan, S.; Lloret, J.; Macías López, E. (2015). Bio-Inspired Mechanisms in Wireless Sensor Networks. ...
Network robustness is an important principle in biology and engineering. Previous studies of global ...
Abstract-Exploring the symbiotic nature of biological systems can result in valuable knowledge for c...
Design and implementation of robust network modules is essential for construction of complex biologi...
<div><p>Design and implementation of robust network modules is essential for construction of complex...
The book presents the challenges inherent in the paradigm shift of network systems from static to hi...
The advent of the edge computing network paradigm places the computational and storage resources awa...