
Talha Naeem QureshiCOMSATS University Islamabad | CUI · Department of Computer Science
Talha Naeem Qureshi
PhD Scholar
I am currently working on topology robustness of scale-free networks and their applications in smart cities.
About
16
Publications
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Introduction
I am student of PhD Computer Science in ComSens R&D Lab at COMSATS University Islamabad. My research interests and publications are in wireless sensor networks, underwater sensor networks, smart grids, topology robustness of scale-free networks, IoT based smart cities, deployment and designing of data centers and secure data networks. I have been working since more than 10 years in field of data and wireless networks. I am also having certifications of CCNA, CCNP, JNCIA, JNCIS-ENT and JNCIS-SEC.
Publications
Publications (16)
A large number of sensors are deployed for performing various tasks in the smart cities. The sensors are connected with each other through the Internet that leads to the emergence of Internet of Things (IoT). As the time passes, the number of deployed sensors is exponentially increasing. Not only this, the enhancement of sensors has also laid the b...
In Internet of Things (IoTs), the increase in the number of devices is directly proportional to the number of applications. The exponential growth of devices increases both the network complexity and risk against topology robustness. Moreover, the network is also prone to targeted and malicious attacks. In this paper, Enhanced Angle Sum Operation R...
In this paper, two algorithms enhanced differential evolution (EDE) and adaptive EDE (AEDE) are proposed. The proposed algorithms improve the robustness of the IoT network without changing the degree distribution of nodes. The EDE algorithm maintains the diversity in a solution space through the tri-vector mutation operation and explores the hidden...
In internet of things (IoTs), the increase in the number of devices is directly proportional to the number of applications. The exponential growth of devices increases both the network complexity and risk against topology robustness. Moreover, the network is also prone to targeted and malicious attacks. In this paper, enhanced angle sum operation R...
Numerous fields have wide range of applications regarding Internet of Things (IoT) specially smart cities. Due to increasing day to day growth in number of applications, there is exponential rise in requirement of IoT devices. IoT network is becoming complex persistently which brings the significant challenge to the robustness of network topology....
In past years there has been increasing interest in field of Wireless Sensor Networks (WSNs). WSNs consist of large number of randomly distributed energy constrained sensor nodes. Sensor nodes have ability to sense and send sensed data to Base Station (BS). Sensing as well as transmitting data towards BS require high energy. Saving energy and exten...
Acoustic communication in Underwater Wireless Sensor Networks (WSNs) is limited due to distinctive attributes including communication channel high latency, multi-path fading and exponential degrading on signal due to dynamic noise characteristics. Inappropriate selection of forwarder node leads to dramatic death due to inefficient, unbalanced energ...
In recent decades numerous Demand Side Management (DSM) techniques have been merged for Smart Grid (SG).
These techniques have been very effective in minimizing cost.
However, lack in other characteristics like effective control over
Peak Average Ratio (PAR) that why they are not equally beneficial for the utility. Due to different characteristic o...
In last decade researchers have a growing attention in domain of Wireless Sensor Networks (WSNs) due to numerous increasing automated industry and battle field applications. WSNs comprises of hundreds or even thousands of unsystematically deployed energy lacking sensor units. These sensors are aimed to transfer data from the field to distant Base S...
Wireless Sensor Networks (WSNs) consist of large number of randomly
deployed energy constrained sensor nodes. Sensor nodes have ability to
sense and send sensed data to Base Station (BS). Sensing as well as
transmitting data towards BS require high energy. In WSNs, saving energy
and extending network lifetime are great challenges. Clustering is a k...
In past years there has been increasing interest in field of Wireless
Sensor Networks (WSNs). One of the major issue of WSNs is development of
energy efficient routing protocols. Clustering is an effective way to
increase energy efficiency. Mostly, heterogenous protocols consider two
or three energy level of nodes. In reality, heterogonous WSNs con...
Wireless Sensor Networks (WSNs), with growing applications in the environment
which are not within human reach have been addressed tremendously in the recent
past. For optimized working of network many routing algorithms have been
proposed, mainly focusing energy efficiency, network lifetime, clustering
processes. Considering homogeneity of network...
Wireless Sensor Networks (WSNs) contain numerous sensor nodes having limited
power resource, which report sensed data to the Base Station (BS) that requires
high energy usage. Many routing protocols have been proposed in this regard
achieving energy efficiency in heterogeneous scenarios. However, every protocol
is not suitable for heterogeneous WSN...