Parallel and Concurrent Computing with Shell Commands: Exploring CPU Architecture, LAN Interconnection and Command Languages for Green Sustainability

Notice

This is an unedited manuscript accepted for publication and provided as an Article in Press for early access at the author’s request. The article will undergo copyediting, typesetting, and galley proof review before final publication. Please be aware that errors may be identified during production that could affect the content. All legal disclaimers of the journal apply.

Year : 2025 | Volume : 12 | 03 | Page :
    By

    Saquib Ahmed,

  • Bhupinder Singh,

  1. Research Scholar, School of Law, Sharda University, Greater Noida, Uttar Pradesh, India
  2. Professor, Sharda School of Law, Sharda University, Greater Noida, Gautam Budh Nagar, Uttar Pradesh, India

Abstract

Parallel and concurrent computing are essential ways of thinking in the digital age, where the cost indexes are efficiency, speed and sustainability. By far performance relevance of each metaphor Contemporary computational environments covering everything from dumb terminals to distributed workstations and intelligent network systems such as the command-line interface (CLI) can never do well on its performance when throughput is needed most the era’s fact that there is no hitting this point over and over again that. As global societies and industries undergo historic transformations toward responsible digital environmental protection, these strands from different technical strands gradually merge to form a roadmap toward green sustainability. Via operating system-level threading, multiprocessing and task scheduling, the processor manages concurrency by slicing up time for tasks; shunting them between contexts quickly whenever it becomes necessary to do so (context switches); and avoiding idle cycles along the way. By using these advances, however, a corporation not only can reduce its operational latency. To most people, parallelism means that data is processed with high speed but low energy consumption.

Keywords: Parallel and Concurrent Computing, Shell Commands: CPU Architecture, LAN Interconnection, Green Sustainability

How to cite this article:
Saquib Ahmed, Bhupinder Singh. Parallel and Concurrent Computing with Shell Commands: Exploring CPU Architecture, LAN Interconnection and Command Languages for Green Sustainability. Journal of Advances in Shell Programming. 2025; 12(03):-.
How to cite this URL:
Saquib Ahmed, Bhupinder Singh. Parallel and Concurrent Computing with Shell Commands: Exploring CPU Architecture, LAN Interconnection and Command Languages for Green Sustainability. Journal of Advances in Shell Programming. 2025; 12(03):-. Available from: https://journals.stmjournals.com/joasp/article=2025/view=233463


References

  1. Arivoli A, Kalaavathi B, Iong-Zong CJ. Developing green computing awareness based on optimization techniques for environmental sustainability. InComputational Intelligence in Sustainable Computing and Optimization 2025 Jan 1 (pp. 237-258). Morgan Kaufmann.
  2. Akhtar ZB. Operating systems (OS): An insight investigative research analysis and future directions. Journal of Technology and Informatics (JoTI). 2024 Oct 31;6(1):58-69.
  3. Englander I, Wong W. The architecture of computer hardware, systems software, and networking: An information technology approach. John Wiley & Sons; 2021 Apr 6.
  4. Wilde M, Foster I, Iskra K, Beckman P, Zhang Z, Espinosa A, Hategan M, Clifford B, Raicu I. Parallel scripting for applications at the petascale and beyond. Computer. 2009 Nov 13;42(11):50-60.
  5. Giunta F, Montella R, Laccetti G, Isaila F, Blas F. A GPU accelerated high performance cloud computing infrastructure for grid computing based virtual environmental laboratory. Advances in Grid Computing. 2011 Feb 28:121-46.
  6. Beltrame G, Fossati L, Sciuto D. Resp: A nonintrusive transaction-level reflective mpsoc simulation platform for design space exploration. IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems. 2009 Nov 17;28(12):1857-69.
  7. Wang G. The ChucK audio programming language.“A strongly-timed and on-the-fly environ/mentality”. Princeton University; 2008.
  8. Babendreier JE, Castleton KJ. Investigating uncertainty and sensitivity in integrated, multimedia environmental models: tools for FRAMES-3MRA. Environmental Modelling & Software. 2005 Aug 1;20(8):1043-55.
  9. Wozniak JM, Davis PE, Shu T, Ozik J, Collier N, Parashar M, Foster I, Brettin T, Stevens R. Scaling deep learning for cancer with advanced workflow storage integration. InProc. of the 4th Workshop on Machine Learning in HPC Environments (MLHPC) in conjunction with ACM/IEEE International Conference for High Performance Computing, Networking, Storage and Analysis (SC) 2018 Nov 12 (pp. 114-123).
  10. Emami, M., Kashani, S., Kamahori, K., Pourghannad, M. S., Raj, R., & Larus, J. R. (2023, March). Manticore: Hardware-accelerated RTL simulation with static bulk- synchronous parallelism. In Proceedings of the 28th ACM International Conference on Architectural Support for Programming Languages and Operating Systems, Volume 4 (pp. 219-237).

Ahead of Print Subscription Review Article
Volume 12
03
Received 17/11/2025
Accepted 18/11/2025
Published 04/12/2025
Publication Time 17 Days


Login


My IP

PlumX Metrics