Web3’da real vaqt ma’lumot sinxronizatsiyasi — tarmoqdagi kechikishlar va ularni kamaytirish texnologiyalari
DOI:
https://doi.org/10.5281/zenodo.16875955Keywords:
Web3, real vaqt sinxronizatsiyasi, tarmoq kechikishi, P2P optimallashtirish, orakl texnologiyalari, tranzaksiya tezligi, blok propagatsiyasiAbstract
Ushbu maqola Web3 ekotizimida real vaqt ma’lumot sinxronizatsiyasini ta’minlash va tarmoq kechikishlarini
kamaytirishga qaratilgan texnologiyalarni tahlil qiladi. Web3’da markazlashtirilmagan tugunlar o‘rtasida ma’lumot
almashinuvi jarayonida yuzaga keladigan kechikishlar dApp’lar samaradorligi va foydalanuvchi tajribasiga bevosita ta’sir
qiladi. Shu sababli blok propagatsiyasini tezlashtirish, P2P tarmoq topologiyasini optimallashtirish, real vaqt ma’lumot
oqimlarini boshqarish va past kechikuvli orakl tizimlaridan foydalanish kabi innovatsion yondashuvlar muhim ahamiyat
kasb etadi. Tadqiqot Aptos Consensus Observer mexanizmi, Perigee tarmoq optimizatsiyasi, QuickNode Streams
infratuzilmasi va Chainlink past kechikuvli orakllarini o‘rganib, ularning real vaqt ishlashdagi afzallik va cheklovlarini
aniqlaydi. Natijalar shuni ko‘rsatadiki, kombinatsiyalangan texnologiyalar majmuasi kechikishlarni sezilarli darajada
kamaytirishi, Web3 tarmoqlarida tranzaksiya tezligi va sinxronizatsiya sifatini oshirishi mumkin. Ushbu yondashuvlar
kelajakda Web3 asosidagi moliyaviy tizimlar, media uzatish xizmatlari va interaktiv ilovalar uchun keng imkoniyatlar
yaratadi.
References
1. Buterin, V. (2014). Ethereum: A Next-Generation Smart Contract and Decentralized Application Platform. Retrieved
from https://ethereum.org/en/whitepaper/
2. Wood, G. (2016). Polkadot: Vision for a Heterogeneous Multi-Chain Framework. Retrieved from https://polkadot.
network/Polkadot-Whitepaper.pdf
3. Zhang, F., Cecchetti, E., Croman, K., Juels, A., & Shi, E. (2016). Town Crier: An Authenticated Data Feed for Smart
Contracts. Proceedings of the 2016 ACM SIGSAC Conference on Computer and Communications Security, 270–282.
https://doi.org/10.1145/2976749.2978326
4. Ben-Sasson, E., Chiesa, A., Genkin, D., Tromer, E., & Virza, M. (2014). SNARKs for C: Verifying Program Executions
Succinctly and in Zero Knowledge. Advances in Cryptology – CRYPTO 2014, 90–108. https://doi.org/10.1007/978-3-
662-44381-1_6
5. Al-Bassam, M., Sonnino, A., Bano, S., Hrycak, J., & Danezis, G. (2018). Chainspace: A Sharded Smart Contracts
Platform. Proceedings of the 2018 ACM SIGSAC Conference on Computer and Communications Security, 103–116.
https://doi.org/10.1145/3243734.3243792
6. Mühlberg, J., & Tuosto, E. (2021). Layer 2 Scaling Solutions and their Impact on Blockchain Performance. Journal of
Blockchain Research, 3(2), 45–60.
7. Chainlink Labs. (2023). Chainlink Documentation. Retrieved from https://docs.chain.link/
8. Benet, J. (2014). IPFS - Content Addressed, Versioned, P2P File System. Retrieved from https://ipfs.io/ipfs/
QmR7GSQM93Cx5eAg6a6p2K5SRgK24MvSxxe5dYLjKk1jXJ
9. Protocol Labs. (2022). Filecoin: A Decentralized Storage Network. Retrieved from https://filecoin.io/filecoin.pdf
10. NASA. (2020). Decentralized Content Distribution Networks and their Applications. International Journal of Distributed
Systems, 12(4), 122–135.
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