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Storage-efficient 16-Bit Hybrid IP traceback with Single Packet.

Ming Hour Yang1

  • 1Information and Computer Engineering, Chung Yuan Christian University, 200 Chung Pei Road, Chung Li City, Taoyuan County 32023, Taiwan.

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This study introduces a novel 16-bit hybrid IP traceback scheme for identifying attack sources. It combines packet marking and logging for high accuracy with minimal storage, achieving zero false positives.

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Area of Science:

  • Computer Science
  • Network Security
  • Cybersecurity

Background:

  • Adversarial IP spoofing necessitates effective attack source identification.
  • Existing IP traceback schemes suffer from high storage demands and false positives.

Purpose of the Study:

  • To propose a novel 16-bit single-packet hybrid IP traceback scheme.
  • To achieve high accuracy and low storage requirements for network attack traceback.

Main Methods:

  • Combines packet marking and packet logging techniques.
  • Utilizes a threshold to balance logging frequency and computational load.
  • Stores user interface information on small-degree routers.

Main Results:

  • Achieves zero false positive and false negative rates.
  • Guarantees reassembly of fragmented packets at the destination.
  • Offers the lowest storage requirements compared to existing single-packet traceback schemes.

Conclusions:

  • The proposed hybrid IP traceback scheme is accurate and efficient.
  • It effectively addresses limitations of current traceback methods.
  • Enables reliable identification of attack sources with minimal resource overhead.