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A splay tree-based approach for efficient resource location in P2P networks.

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  • 1National Pilot School of Software, Yunnan University, Kunming City 650091, China.

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A new Splay tree Chord (SChord) structure improves resource location efficiency in peer-to-peer systems. SChord minimizes routing hops using an adaptive algorithm, enhancing overall system performance.

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Area of Science:

  • Computer Science
  • Distributed Systems

Background:

  • Resource location is crucial for structured peer-to-peer (P2P) system performance.
  • Existing Chord protocol variants offer potential performance improvements.

Purpose of the Study:

  • To propose Splay tree Chord (SChord), a novel P2P structure enhancing resource location efficiency.
  • To introduce an adaptive routing algorithm for SChord to minimize hop count.

Main Methods:

  • Implemented a novel Chord finger table using a splay tree data structure.
  • Developed and analyzed an adaptive routing algorithm for SChord.
  • Conducted theoretical analysis and simulations to evaluate performance.

Main Results:

  • SChord extends the Chord finger table with additional routing entries.
  • The adaptive routing algorithm significantly minimizes hop count without protocol overhead.
  • Theoretical analysis and simulations confirm SChord's efficiency in reducing routing hops compared to Chord.

Conclusions:

  • SChord offers a significant improvement in resource location efficiency for structured P2P systems.
  • The splay tree-based approach and adaptive routing effectively reduce network hops.
  • Simulation results validate the analytical findings on SChord's performance benefits.