Institute Post-Doctoral Fellow (IPDF), Computer Science and Engineering, Indian Institute of Technology Guwahati Indian Institute of Technology Guwahati
A Review on Next-Generation Wireless Health Monitoring System: Privacy and Protection Archita Bhattacharyya, Habila Basumatary, Mrinal Kanti Deb Barma Procedia Computer Science, 2025 Healthcare is essential for improving the quality of life, yet its affordability and accessibility remain as global challenges. This paper gives a review on the implementation and oversight of sensors in the medical field, highlighting their potential to reduce costs and enhance patient care through mobile technologies and sensor networks. Various types of sensors, their applications, associated threats, and risk mitigation strategies are discussed. The strengths, weaknesses opportunities, and threats of integrating sensor networks into the healthcare sector are outlined in the SWOT analysis. This paper additionally addresses the essential privacy and security issues for medical sensors, utilizing contemporary sensor technology to safeguard medical data while maintaining its security and confidentiality.
False Data Injection Attack Detection in EV Charging Network Using NARX Neural Network Habila Basumatary, Manas Khatua, Shabari Nath IEEE Transactions on Transportation Electrification, 2025 Cyber threats in electric vehicle (EV) charging networks have become prevalent and target vehicle’s charging processes and power supply from the grid. It has been observed that the existing state-of-the-art schemes for false data injection (FDI) attack detection cannot detect the injection, which is random or unpredictable in nature and persists for short time intervals. Most importantly, it remains undetected when the impact of injection mimics the natural behavior of the EV charging process. Therefore, in this article, a deep learning (DL)-based FDI attack detection scheme is proposed for the EV charging network. The nonlinear autoregressive exogenous (NARX) input neural network (NN) is used to estimate the energy (kWh) delivered to an EV during its charging session. The error of estimation (EoE) obtained from the sensed and estimated values is further analyzed using the interquartile range (IQR) technique, and the attack is detected by identifying a few consecutive spikes given by IQR. The proposed attack detection method is evaluated using a real-world EV charging dataset and compared with the existing state-of-the-art attack detection scheme. The simulation results indicate that the proposed attack detection scheme outperforms the other schemes by achieving an attack detection accuracy of 99.40%, whereas the existing schemes give 88.68% and 98% accuracies, respectively.
Performance Analysis of Centroid-based Routing Protocol in Wireless Sensor Networks Habila Basumatary, Arindam Debnath, Mrinal Kanti Deb Barma, Bidyut Kumar Bhattacharyya IETE Technical Review Institution of Electronics and Telecommunication Engineers India, 2024 In this paper, a clustering-based energy-efficient routing protocol is designed to overcome the hotspot problem in Wireless Sensor networks (WSNs). We have divided the sensor nodes into several clusters, each cluster having a Cluster Head (CH) or a leader node and also implemented a centroid-based mobile sink. The sink moves to a location called “Energy Dependent Centroid Point” where the CHs need minimal energy to transmit data to the sink. We have defined this “Centroid Point” by an equation where the residual energies of CHs are used as a “weight factor” on a normal centroid equation. We have simulated the proposed algorithm and analyzed the results by varying the values of the energy weight factor in the centroid equation up to certain limits (α = 0, 1, 2, and 3). The simulation results are compared with WSN’s existing routing protocols having a mobile sink and a static sink. The comparison results show that our proposed centroid model with α = 0, where the mobile sink moves independent of the residual energies of CHs gives better performances in terms of network lifetime, energy loss, and total data packet transmission.
A review on recent techniques developed for energy conservation in Wireless Sensor Networks Habila Basumatary, Rajib Chowdhuri, Mrinal Kanti Deb Barma Proceedings of 2023 International Conference on Intelligent Systems Advanced Computing and Communication Isacc 2023, 2023 In modern days, with the fastest growing technology trends, the benefits of Wireless Sensor Networks (WSNs) are also increasing rapidly. In these networks, very small-sized wireless sensor nodes are used widely which are capable of sensing and doing computations. These sensor nodes are resource-limited in nature i.e., they have limited storage capacity, power supply, computation capability, bandwidth, etc. WSNs are mostly used in outdoor application areas like environmental monitoring, land mines detections or different military applications where the power supply to the sensor nodes does the major role. In these applications, without any external power supply, the sensor nodes run the whole network by collecting data from its surroundings and also communicate these data to the end-user. Hence, conserving energy for the sensor nodes is one of the most challenging tasks in WSNs. In this paper, we have done detailed study on the existing literature which are proposed with the objective to improve the energy efficiency issue in WSNs. Here, we have selectively highlighted some of the recently proposed methodologies to understand the present research scenario. We have also shown comparative analysis on the techniques and tools which are used to propose these works and their variation of the results are discussed accordingly.
A Routing Technique for Enhancing the Quality of Service in Vanet Arindam Debnath, Habila Basumatary, Mili Dhar, Bidyut K. Bhattacharyya, Mrinal Kanti Debbarma IETE Journal of Research, 2023 VANET (Vehicular Ad- hoc Network) is becoming a part of a smart city in this communicating world. The major issue is frequent “Link Breakage Problem” between Source vehicle and Forwarding Vehicles (FV). If a source vehicle wants to send a set of the data packet to a destination vehicle there needs to have an FV(s) to transmit the data, given the destination vehicle is situated outside the communication range. Normally the Link Breakage problem degrades the quality of service (QoS) of VANET, which in turn degrades the parameters which determine the QoS. These are Packet Delivery Ratio, increases End to End delay, increases the Control Packet Overhead and reduces the data rate, namely bit/sec/vehicle. In our new method, we have made all the above parameters better than existing methods by a new approach, which enable an End to End communicate for a long-time. It is done by choosing a possible FV, which will remain in the transmission zone of the source unless the complete data packet is received by the FV. This is done by defining an “Effective Region” we call it “E-region”, where FV was chosen from that region. This region is defined from a calculated parameter “E”. This parameter E is calculated from the relative velocity of the source and the chosen forwarding vehicle. We have found that our method can deliver about 14.8 kbit/sec/Vehicle data compared to other methods which were ranging from (7.87–1.21) kbit/sec/Vehicle for 300 vehicles in the network.
Comparative Study on Different Parameters Used for Energy Conservation in Wireless Sensor Networks Habila Basumatary, Mrinal Kanti Debbarma IETE Technical Review Institution of Electronics and Telecommunication Engineers India, 2022 The Wireless Sensor Networks (WSNs) are mostly used for applications which hardly have human interaction and WSN is always known for its limited-energy issue. The wireless sensor nodes are equipped with an in-built power supply and have limited energy to complete their assigned tasks in WSNs. Therefore, for WSNs designing energy-efficient protocols is always been a challenging task for researchers. In this paper, we have studied and discussed various WSNs' existing protocols highlighting their merits and demerits. We have also made a comparative study on different parameters and methodologies followed by the respective references while designing different energy-efficient WSN protocols for different scenarios.
False data injection attack detection in ev charging network using narx neural network H Basumatary, M Khatua, S Nath IEEE Transactions on Transportation Electrification , 2025 2025 Citations: 6
A review on next-generation wireless health monitoring system: Privacy and protection A Bhattacharyya, H Basumatary, MKD Barma Procedia Computer Science 258, 3857-3866 , 2025 2025 Citations: 2
Performance analysis of centroid-based routing protocol in wireless sensor networks H Basumatary, A Debnath, MK Deb Barma, BK Bhattacharyya IETE Technical Review 41 (2), 187-199 , 2024 2024 Citations: 4
A routing technique for enhancing the quality of service in Vanet A Debnath, H Basumatary, M Dhar, BK Bhattacharyya, MK Debbarma IETE Journal of Research 69 (4), 2193-2206 , 2023 2023 Citations: 13
A review on recent techniques developed for energy conservation in Wireless Sensor Networks H Basumatary, R Chowdhuri, MKD Barma 2023 International Conference on Intelligent Systems, Advanced Computing and … , 2023 2023 Citations: 1
Comparative study on different parameters used for energy conservation in wireless sensor networks H Basumatary, MK Debbarma IETE Technical Review 39 (3), 600-612 , 2022 2022 Citations: 5
Fuzzy logic-based VANET routing method to increase the QoS by considering the dynamic nature of vehicles D Arindam, B Habila, D Mili, MK Debbarma, BK Bhattacharyya Computing. Archives for Informatics and Numerical Computation 103 (7), 1391-1415 , 2021 2021 Citations: 32
Clustering based two dimensional motion of sink node in wireless sensor networks H Basumatary, A Debnath, MK Deb Barma, BK Bhattacharyya Wireless Personal Communications 118 (1), 161-183 , 2021 2021 Citations: 6
Centroid-Based Routing protocol with moving sink node for uniform and non-uniform distribution of wireless sensor nodes: H. Basumatary et al. H Basumatary, A Debnath, MKD Barma, BK Bhattacharyya The Journal of Supercomputing 77 (4), 3727-3751 , 2021 2021 Citations: 7
Center of mass and junction based data routing method to increase the QoS in VANET A Debnath, H Basumatary, A Tarafdar, MK DebBarma, BK Bhattacharyya AEU-International Journal of Electronics and Communications 108, 36-44 , 2019 2019 Citations: 24
Analysis of mobile sink based routing protocols in wireless sensor networks H Basumatary, MKD Barma International Journal of Computational Intelligence & IoT 2 (3) , 2019 2019 Citations: 3
Communications (AEÜ) A Debnath, H Basumatary, A Tarafdar, MK DebBarma, BK Bhattacharyya 2019
Multiclustered Energy-Efficient Routing Algorithm with Mobile Sink Node Moving in Clockwise Direction H Basumatary, MM Singh Proceedings of International Conference on Recent Advancement on Computer … , 2018 2018 Citations: 6
MERAM-R: multi-clustered energy efficient routing algorithm with randomly moving sink node MM Singh, H Basumatary Journal of Scientific & Industrial Research 77 (1), 15-17 , 2018 2018 Citations: 10
MOST CITED SCHOLAR PUBLICATIONS
Fuzzy logic-based VANET routing method to increase the QoS by considering the dynamic nature of vehicles D Arindam, B Habila, D Mili, MK Debbarma, BK Bhattacharyya Computing. Archives for Informatics and Numerical Computation 103 (7), 1391-1415 , 2021 2021 Citations: 32
Center of mass and junction based data routing method to increase the QoS in VANET A Debnath, H Basumatary, A Tarafdar, MK DebBarma, BK Bhattacharyya AEU-International Journal of Electronics and Communications 108, 36-44 , 2019 2019 Citations: 24
A routing technique for enhancing the quality of service in Vanet A Debnath, H Basumatary, M Dhar, BK Bhattacharyya, MK Debbarma IETE Journal of Research 69 (4), 2193-2206 , 2023 2023 Citations: 13
MERAM-R: multi-clustered energy efficient routing algorithm with randomly moving sink node MM Singh, H Basumatary Journal of Scientific & Industrial Research 77 (1), 15-17 , 2018 2018 Citations: 10
Centroid-Based Routing protocol with moving sink node for uniform and non-uniform distribution of wireless sensor nodes: H. Basumatary et al. H Basumatary, A Debnath, MKD Barma, BK Bhattacharyya The Journal of Supercomputing 77 (4), 3727-3751 , 2021 2021 Citations: 7
False data injection attack detection in ev charging network using narx neural network H Basumatary, M Khatua, S Nath IEEE Transactions on Transportation Electrification , 2025 2025 Citations: 6
Clustering based two dimensional motion of sink node in wireless sensor networks H Basumatary, A Debnath, MK Deb Barma, BK Bhattacharyya Wireless Personal Communications 118 (1), 161-183 , 2021 2021 Citations: 6
Multiclustered Energy-Efficient Routing Algorithm with Mobile Sink Node Moving in Clockwise Direction H Basumatary, MM Singh Proceedings of International Conference on Recent Advancement on Computer … , 2018 2018 Citations: 6
Comparative study on different parameters used for energy conservation in wireless sensor networks H Basumatary, MK Debbarma IETE Technical Review 39 (3), 600-612 , 2022 2022 Citations: 5
Performance analysis of centroid-based routing protocol in wireless sensor networks H Basumatary, A Debnath, MK Deb Barma, BK Bhattacharyya IETE Technical Review 41 (2), 187-199 , 2024 2024 Citations: 4
Analysis of mobile sink based routing protocols in wireless sensor networks H Basumatary, MKD Barma International Journal of Computational Intelligence & IoT 2 (3) , 2019 2019 Citations: 3
A review on next-generation wireless health monitoring system: Privacy and protection A Bhattacharyya, H Basumatary, MKD Barma Procedia Computer Science 258, 3857-3866 , 2025 2025 Citations: 2
A review on recent techniques developed for energy conservation in Wireless Sensor Networks H Basumatary, R Chowdhuri, MKD Barma 2023 International Conference on Intelligent Systems, Advanced Computing and … , 2023 2023 Citations: 1
Communications (AEÜ) A Debnath, H Basumatary, A Tarafdar, MK DebBarma, BK Bhattacharyya 2019