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Article

A Software Framework for Intelligent Security Measures Regarding Sensor Data in the Context of Ambient Assisted Technology

by
Shakeel Ahmed
1,*,
Parvathaneni Naga Srinivasu
2 and
Abdulaziz Alhumam
1
1
Department of Computer Science, College of Computer Sciences and Information Technology, King Faisal University, Al-Ahsa 31982, Saudi Arabia
2
Department of Computer Science and Engineering, Prasad V Potluri Siddhartha Institute of Technology, Vijayawada 520007, India
*
Author to whom correspondence should be addressed.
Sensors 2023, 23(14), 6564; https://doi.org/10.3390/s23146564
Submission received: 5 June 2023 / Revised: 18 July 2023 / Accepted: 19 July 2023 / Published: 20 July 2023
(This article belongs to the Section Internet of Things)

Abstract

Ambient assisted technology (AAT), which has the potential to enhance patient care and productivity and save costs, has emerged as a strategic goal for developing e-healthcare in the future. However, since the healthcare sensor must be interconnected with other systems at different network tiers, distant enemies have additional options to attack. Data and resources integrated into the AAT are vulnerable to security risks that might compromise privacy, integrity, and availability. The gadgets and network sensor devices are layered with clinical data since they save personal information such as patients’ names, addresses, and medical histories. Considering the volume of data, it is difficult to ensure its confidentiality and security. As sensing devices are deployed over a wider region, protecting the privacy of the collected data becomes more difficult. The current study proposes a lightweight security mechanism to ensure the data’s confidentiality and integrity of the data in ambient-assisted technology. In the current study, the data are encrypted by the master node with adequate residual energy, and the master node is responsible for encrypting the data using the data aggregation model using a node’s key generated using an exclusive basis system and a Chinese remainder theorem. The integrity of the data is evaluated using the hash function at each intermediate node. The current study defines the design model’s layered architecture and layer-wise services. The model is further analyzed using various evaluation metrics, such as energy consumption, network delay, network overhead, time in generating hash, tradeoff between encryption and decryption, and entropy metrics. The model is shown to adequately perform on all measures considered in the analysis.
Keywords: ambient assistive technology; encryption; Internet of Medical Things; security framework; residual energy; energy consumption; network lifetime ambient assistive technology; encryption; Internet of Medical Things; security framework; residual energy; energy consumption; network lifetime

Share and Cite

MDPI and ACS Style

Ahmed, S.; Naga Srinivasu, P.; Alhumam, A. A Software Framework for Intelligent Security Measures Regarding Sensor Data in the Context of Ambient Assisted Technology. Sensors 2023, 23, 6564. https://doi.org/10.3390/s23146564

AMA Style

Ahmed S, Naga Srinivasu P, Alhumam A. A Software Framework for Intelligent Security Measures Regarding Sensor Data in the Context of Ambient Assisted Technology. Sensors. 2023; 23(14):6564. https://doi.org/10.3390/s23146564

Chicago/Turabian Style

Ahmed, Shakeel, Parvathaneni Naga Srinivasu, and Abdulaziz Alhumam. 2023. "A Software Framework for Intelligent Security Measures Regarding Sensor Data in the Context of Ambient Assisted Technology" Sensors 23, no. 14: 6564. https://doi.org/10.3390/s23146564

APA Style

Ahmed, S., Naga Srinivasu, P., & Alhumam, A. (2023). A Software Framework for Intelligent Security Measures Regarding Sensor Data in the Context of Ambient Assisted Technology. Sensors, 23(14), 6564. https://doi.org/10.3390/s23146564

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