Satish Chand

dblp:12/1862 · DBLP profile ↗
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39ranked-venue papers
6as first author
13since 2021 · last 2025
0000-0002-5250-9074ORCID · corroborated

Domains — the database's venue-derived domains; a paper can count in several

Graphics, computer vision, multimedia, augmented reality and games · 16 · 2 first-author · 5 since 2021Artificial intelligence and machine learning · 9 · 3 since 2021Computer networks · 6 · 4 first-author · 1 since 2021Security and privacy · 4 · 2 since 2021Databases, data management, data science and information retrieval · 2 · 2 since 2021Applied, interdisciplinary, general and emerging computing · 2 · 1 since 2021
YearPublicationVenuePosition
2025 Re-induction based mining for high utility item-sets
Pushp S. Mathur, Satish Chand
Appl. Intell.2
2024 A Reinduction-Based Approach for Efficient High Utility Itemset Mining from Incremental Datasets
abstract
Abstract High utility itemset mining is a crucial research area that focuses on identifying combinations of itemsets from databases that possess a utility value higher than a user-specified threshold. However, most existing algorithms assume that the databases are static, which is not realistic for real-life datasets that are continuously growing with new data. Furthermore, existing algorithms only rely on the utility value to identify relevant itemsets, leading to even the earliest occurring combinations being produced as output. Although some mining algorithms adopt a support-based approach to account for itemset frequency, they do not consider the temporal nature of itemsets. To address these challenges, this paper proposes the Scented Utility Miner (SUM) algorithm that uses a reinduction strategy to track the recency of itemset occurrence and mine itemsets from incremental databases. The paper provides a novel approach for mining high utility itemsets from dynamic databases and presents several experiments that demonstrate the effectiveness of the proposed approach.
Pushp Sra, Satish Chand
Data Sci. Eng.2
2024 A secure three-factor authentication protocol for mobile networks
abstract
User authentication is a necessary mechanism to communicate securely for mobile networks. Recently, Xie et al. have discussed a three-factor authentication (3FA) scheme using elliptic curve cryptography (ECC) for mobile networks and claimed that it is secure even if the user's two factors are known to the attacker. However, in this paper, we cryptanalyse their scheme and find the offline password guessing and user impersonation attacks in it. We also propose a secure 3FA scheme for mobile networks using ECC by removing the weaknesses of their scheme. We show the formal security verification of the proposed scheme using the ProVerif tool. We discuss its informal security analysis to show that it is resistant to the various known attacks. We also present its performance analysis along with the related schemes in terms of computational cost and security features, and show that it offers more security features as compared to the related schemes.
Devender Kumar, Satish Chand, Bijendra Kumar
Int. J. Inf. Comput. Secur.2
2024 A residual utility-based concept for high-utility itemset mining
Pushp Sra, Satish Chand
Knowl. Inf. Syst.2
2024 Hybrid sigmoid activation function and transfer learning assisted breast cancer classification on histopathological images
Satish Chand
Multim. Tools Appl.2
2023 Reversible data hiding in encrypted image using two-pass pixel value ordering
Arun Kumar Rai, Hari Om, Satish Chand
J. Inf. Secur. Appl.3
2023 High capacity reversible data hiding in encrypted images using prediction error encoding
Arun Kumar Rai, Hari Om, Satish Chand
Multim. Tools Appl.3
2022 Skeleton-Based Human Activity Recognition Using Bidirectional LSTM
Satish Chand
ISDA (3)3
2022 High-fidelity reversible data hiding technique based on adaptive pairing of prediction errors
Arun Kumar Rai, Hari Om, Satish Chand
Multim. Tools Appl.3
2022 Semantic segmentation and detection of satellite objects using U-Net model of deep learning
Yadavendra, Satish Chand
Multim. Tools Appl.2
2021 Extracting road maps from high-resolution satellite imagery using refined DSE-LinkNet
abstract
Road detection and extraction have gained momentum in recent past years with crucial applications such as urban planning, autonomous driving, automated map update, providing aid to rescue missions, etc. The current methodologies generate the disconnected road segments, cause boundary loss, and also they are incapable of handling the imbalanced class distribution problems. In this paper, we propose a fully convolutional architecture, named as refined DSE-LinkNet, to extract the connected and precise road maps. We use a pre-trained encoder by combining the layers of the two very efficient and light-weight CNN models: DenseNet and SE-Net that makes the proposed model more expressive with faster convergence. We introduce a new module, Fusion block, in our architecture that enhances its precise localisation as well as classification ability by capturing multilevel as well as multiscale features. To address the imbalanced class distribution problem, a new aggregate loss function is proposed by integrating binary cross-entropy, Jaccard coefficient, and Lovasz sigmoid loss functions. The experiments are performed on a publicly available dataset, DeepGlobe Road Extraction Challenge 2018, to show its efficacy over the D-LinkNet, winner of DeepGlobe Challenge 2018, by achieving IoU of 0.69 with lesser number of parameters and better computational complexity.
Prativa Das, Satish Chand
Connect. Sci.2
2021 MedHypChain: A patient-centered interoperability hyperledger-based medical healthcare system: Regulation in COVID-19 pandemic
Mahender Kumar, Satish Chand
J. Netw. Comput. Appl.2
2021 Uncovering research trends and topics of communities in machine learning
Deepak Sharma 0005, Bijendra Kumar, Satish Chand, Rajiv Ratn Shah
Multim. Tools Appl.3
2020 A Secure and Efficient Cloud-Centric Internet-of-Medical-Things-Enabled Smart Healthcare System With Public Verifiability
abstract
The potential of the Internet-of-Medical-Things (IoMT) technology for interconnecting the biomedical sensors in e-health has ameliorated the people's living standards. Another technology recognized in the recent e-healthcare is outsourcing the medical data to the cloud. There are, however, several stipulations for adopting these two technologies. The most difficult is the privacy of medical data and the challenge resulting from the resource constraint environment of sensor devices. In this article, we present the state-of-the-art secure and efficient cloud-centric IoMT-enabled smart healthcare system with public verifiability. The system novelty implements an escrow-free identity-based aggregate signcryption (EF-IDASC) scheme to secure data transmission, which is also proposed in this article. The proposed smart healthcare system fetches the medical data from multiple sensors implanted on the patient's body, signcrypts and aggregates them under the proposed EF-IDASC scheme, and outsources the data on the medical cloud server via smartphone. The system does not reveal any information about the identity and medical data of the patient. We further analyze the performance of the proposed smart healthcare system in terms of energy consumption. Moreover, we compare the performance of the proposed EF-IDASC scheme with other related schemes.
Mahender Kumar, Satish Chand
IEEE Internet Things J.2
2020 SecP2PVoD: a secure peer-to-peer video-on-demand system against pollution attack and untrusted service provider
Mahender Kumar, Satish Chand
Multim. Tools Appl.2
2020 A comparative study of breast cancer tumor classification by classical machine learning methods and deep learning method
Yadavendra, Satish Chand
Mach. Vis. Appl.2
2019 A Pairing-Less Identity-Based Blind Signature with Message Recovery Scheme for Cloud-Assisted Services
Mahender Kumar, Satish Chand
Inscrypt2
2019 Text detection and localization in natural scene images based on text awareness score
Rituraj Soni, Bijendra Kumar, Satish Chand
Appl. Intell.3
2019 ESKI-IBE: Efficient and secure key issuing identity-based encryption with cloud privacy centers
Mahender Kumar, Satish Chand
Multim. Tools Appl.2
2019 An optimal high capacity reversible data hiding scheme using move to front coding for LZW codes
Rajeev Kumar 0007, Satish Chand, Samayveer Singh
Multim. Tools Appl.2
2019 Optimal feature and classifier selection for text region classification in natural scene images using Weka tool
Rituraj Soni, Bijendra Kumar, Satish Chand
Multim. Tools Appl.3
2018 An Improved Histogram-Shifting-Imitated reversible data hiding based on HVS characteristics
Rajeev Kumar 0007, Satish Chand, Samayveer Singh
Multim. Tools Appl.2
2017 A novel high capacity reversible data hiding scheme based on pixel intensity segmentation
Rajeev Kumar 0007, Satish Chand
Multim. Tools Appl.2
2016 A reversible high capacity data hiding scheme using pixel value adjusting feature
Rajeev Kumar 0007, Satish Chand
Multim. Tools Appl.2
2016 SPAM revisited for median filtering detection using higher-order difference
abstract
Abstract In this paper, we propose a robust median filtering detection scheme utilizing the conditional joint distribution of high‐order differences. The higher‐order differences provide additional information about the correlation between a pixel and its neighbors. The relationship between a pixel and its neighbors becomes more prominent in median‐filtered images as compared with non‐median filtered images. We evaluate the performance of our method and compare it with the state of the art median filtering detection techniques on multiple databases in various environments. We use a linear discriminant classifier based on Moore–Penrose pseudoinverse matrix for classifying the median and non‐median filtered images. Experimentally, we find that our method is more effective for all types of images including uncompressed and highly compressed JPEG low‐resolution images. We also evaluate the performance of our method on Gaussian‐filtered, averaging‐filtered, and median‐filtered images of the BOWS2 and UCID databases. Copyright © 2016 John Wiley & Sons, Ltd.
Satish Chand, Nikolay Skarbnik
Secur. Commun. Networks2
2014 Effect of the groove dimensions and orientation on the static and dynamic performance of non recessed hybrid journal bearing
Vijay Kumar Dwivedi, Satish Chand, K. N. Pandey
ICSEng2
2013 3-Tier Heterogeneous Network Model for Increasing Lifetime in Three Dimensional WSNs
Samayveer Singh, Satish Chand, Bijendra Kumar
QSHINE2
2011 Neural networks and fuzzy logic-based spark advance control of SI engines
Samir Saraswati, Praveen Kumar Agarwal, Satish Chand
Expert Syst. Appl.3
2011 New pixel based approach for reverse play of MPEG video for streaming system
Satish Chand
Signal Process. Image Commun.2
2010 Efficient staircase scheme with seamless channel transition mechanism
Satish Chand, Hari Om
Comput. Networks1
2010 Online linearization-based neural predictive control of air-fuel ratio in SI engines with PID feedback correction scheme
Samir Saraswati, Satish Chand
Neural Comput. Appl.2
2010 Reconstruction of cylinder pressure for SI engine using recurrent neural network
Samir Saraswati, Satish Chand
Neural Comput. Appl.2
2009 Segmented patching broadcasting protocol for video data
Satish Chand, Bijendra Kumar, Hari Om
Comput. Commun.1
2009 Fault-tolerant control of three-pole active magnetic bearing
Praveen Kumar Agarwal, Satish Chand
Expert Syst. Appl.2
2009 Video Data Delivery using Slotted Patching
Satish Chand, Bijendra Kumar, Hari Om
J. Netw. Comput. Appl.1
2009 SC- and SS-wavelet transforms
Satish Chand
Signal Process.1
2008 Patching-based broadcasting scheme for video services
Satish Chand, Bijendra Kumar, Hari Om
Comput. Commun.1
2007 Geometrico-Harmonic Data Broadcasting and Receiving Scheme for Popular Videos
abstract
Among all the data broadcasting schemes, the harmonic scheme has been reported to provide the best performance for user latency; however, it does not always deliver the video data to the users in time. To provide the video data reliably, its two main variants, i.e., cautious and quasi-harmonic schemes have been proposed. These variants require a video to be divided into large number of subsegments that leads to a problem of management complexity. Besides the manageability problem, these variants require more bandwidth than the original harmonic scheme. The cautious and the quasi-harmonic schemes need, respectively, 0.50*b and 0.1771*b more bandwidth than the original harmonic scheme in limiting case. In this paper, we propose a new broadcasting scheme that is named as the geometrico-harmonic scheme. This scheme provides the video data to the users in time unlike the original harmonic scheme, and also its bandwidth requirement is very much same as that of the original harmonic scheme. In comparison to the cautious and the quasi-harmonic schemes, it has better performance for the user latency and the buffer space. For disk transfer rate, its performance is same as that of the cautious harmonic scheme, but in comparison the quasi-harmonic scheme, it performs better
Satish Chand, Hari Om
IEEE Trans. Circuits Syst. Video Technol.1
2007 Geometrico-Harmonic Broadcasting Scheme With Continuous Redundancy
abstract
The harmonic broadcasting scheme has the best performance for the user latency. It, however, does not always provide the video data in time to the users. To provide the video data reliably, its two main variants - cautious and quasi-harmonic schemes have been proposed. They require more bandwidth than the harmonic scheme. The cautious and quasi-harmonic schemes need 0.50 b and 0.1771 b more bandwidth, respectively, than the harmonic scheme in limiting case. In this paper, a new broadcasting scheme: geometrico-harmonic scheme with continuous redundancy is proposed. This scheme provides the video data in time unlike the harmonic scheme, and its bandwidth requirement can be had as close to that of the harmonic scheme as we please. Moreover, the extra bandwidth required in this scheme can be evaluated at any point of time, that is, it can be estimated for a fractional size of a segment and/or subsegment. The bandwidth is a scarce resource and its requirement for any fractional size of segments (or subsegments) may be helpful while dealing with the variable bandwidth rate-encoded videos. In the proposed scheme, the user latency can be made arbitrarily close to that of the harmonic scheme. In comparison to the cautious and the quasi-harmonic schemes, it has better performance for the user latency as well as the buffer storage. For disk transfer rate, it performs better than the quasi-harmonic scheme and in comparison to the cautious harmonic scheme its performance is same
Hari Om, Satish Chand
IEEE Trans. Multim.2