Published on: September 2026
A CONSTRAINED-RESILIENCE FRAMEWORK COUPLING BATTERY ENVELOPES, HASH-CHAIN PROVENANCE, AND QUANTUM ANNEALING
V. A. Sharma U V Kanade
S M Harle
Article Status
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Abstract
Keywords— constrained resilience; digital twins; green logistics; hash-chain provenance; FKF/FKL transforms; distributional and two-sided FKF; sequential convergence; spectral resonance; multi-echelon lead time; supply-chain resilience; quantum logistics; quantum annealing; QUBO; ULD; IoT; intelligent transportation; Industry 5.0; human-centric automation; blockchain traceability; sustainable logistics; hybrid-electric mobility; battery sizing; solar-assisted EVs; power-line carrier; anti-theft systems
How to Cite this Paper
Sharma, V. A. & Kanade, U. V. (2026). A Constrained-Resilience Framework Coupling Battery Envelopes, Hash-Chain Provenance, and Quantum Annealing. International Journal of Creative and Open Research in Engineering and Management, <i>02</i>(9), 1-9. https://doi.org/10.55041/ijcope.v2i9.009
Sharma, V., and U Kanade. "A Constrained-Resilience Framework Coupling Battery Envelopes, Hash-Chain Provenance, and Quantum Annealing." International Journal of Creative and Open Research in Engineering and Management, vol. 02, no. 9, 2026, pp. 1-9. doi:https://doi.org/10.55041/ijcope.v2i9.009.
Sharma, V., and U Kanade. "A Constrained-Resilience Framework Coupling Battery Envelopes, Hash-Chain Provenance, and Quantum Annealing." International Journal of Creative and Open Research in Engineering and Management 02, no. 9 (2026): 1-9. https://doi.org/https://doi.org/10.55041/ijcope.v2i9.009.
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