Sarcouncil Journal of Engineering and Computer Sciences
Sarcouncil Journal of Engineering and Computer Sciences
An Open access peer reviewed international Journal
Publication Frequency- Monthly
Publisher Name-SARC Publisher
ISSN Online- 2945-3585
Country of origin-PHILIPPINES
Impact Factor- 3.7
Language- English
Keywords
- Engineering and Technologies like- Civil Engineering, Construction Engineering, Structural Engineering, Electrical Engineering, Mechanical Engineering, Computer Engineering, Software Engineering, Electromechanical Engineering, Telecommunication Engineering, Communication Engineering, Chemical Engineering
Editors

Dr Hazim Abdul-Rahman
Associate Editor
Sarcouncil Journal of Applied Sciences

Entessar Al Jbawi
Associate Editor
Sarcouncil Journal of Multidisciplinary

Rishabh Rajesh Shanbhag
Associate Editor
Sarcouncil Journal of Engineering and Computer Sciences

Dr Md. Rezowan ur Rahman
Associate Editor
Sarcouncil Journal of Biomedical Sciences

Dr Ifeoma Christy
Associate Editor
Sarcouncil Journal of Entrepreneurship And Business Management
Low Power Techniques for Wireless SOCs: Architecture and Integration for Safety-Critical Systems
Keywords: Power Optimization, Safety-critical Systems, Wireless SOC, Mixed-criticality Architecture, Hardware-software Co-design.
Abstract: The integration of power optimization techniques across hardware and software domains represents an essential paradigm for advancing safety-critical wireless Systems-on-Chip. As wireless connectivity permeates critical infrastructure applications, extending operational duration while maintaining reliability has become a fundamental design imperative. Safety-critical wireless systems face unique challenges due to regulatory requirements mandating redundancy and continuous monitoring, features that traditionally increase power consumption. This work examines architectural strategies, RTL techniques, physical implementation methods, and hardware-software co-design approaches that enable power-efficient safety-critical systems. From clock domain partitioning and hierarchical power gating to activity-driven optimization and criticality-based device selection, these techniques work synergistically across abstraction levels. The coordinated implementation of these methods allows designers to satisfy seemingly contradictory requirements for power efficiency and absolute reliability, establishing a framework for next-generation wireless SOCs in domains including medical, automotive, and industrial applications.
Author
- Kumar Kanti Ghosh
- Independent Researcher USA