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Novel Deperming Protocols to Reduce Demagnetizing Time and Improve the Performance for the Magnetic Silence of Warships

Author

Listed:
  • Sang-Hyeon Im

    (Department of Electrical Engineering, Dong Eui University, Busan 47340, Korea)

  • Ho-Yeong Lee

    (Department of Electrical Engineering, Pusan National University, Busan 47340, Korea)

  • Gwan-Soo Park

    (Department of Electrical Engineering, Pusan National University, Busan 47340, Korea)

Abstract

Magnetic silence of warships is necessary to prevent damage caused by the magnetic mines detecting the magnetic field of the warship. Anhysteretic and Deperm-ME protocols are used to reduce permanent magnetization among magnetic signals. However, they have some disadvantages. Therefore, this paper proposes an effective deperming protocol that is easily controlled and reduces the demagnetization time. A protocol composed of two Anhysteretic protocols is presented using the Preisach model to easily manage and ensure excellent performance. Each stage has its own advantages by considering the Preisach density distribution. In Stage 1, the existing magnetic history is erased, and the demagnetization time is reduced. In Stage 2, the demagnetization performance is improved. The effectiveness of the protocol was verified via simulations using the Preisach model and experiments using a specimen. When the proposed protocol was applied, the results were excellent when applying Anhysteretic and Deperm-ME. In addition, even if the number of magnetic fields was reduced by 4 and 8 in the proposed protocol, the demagnetization result was maintained. Therefore, if the proposed protocol is applied, excellent demagnetization results can be obtained and the time required to perform demagnetization can be reduced, thereby improving the operational capability of the warship.

Suggested Citation

  • Sang-Hyeon Im & Ho-Yeong Lee & Gwan-Soo Park, 2021. "Novel Deperming Protocols to Reduce Demagnetizing Time and Improve the Performance for the Magnetic Silence of Warships," Energies, MDPI, vol. 14(19), pages 1-10, October.
  • Handle: RePEc:gam:jeners:v:14:y:2021:i:19:p:6295-:d:648902
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