The most beneficial location based totally fuzzy good judgment model for Underwater Communications is an advanced and innovative solution for conditions consisting of underwater navigation and verbal exchange, which requires cautious attention of various environmental factors. This version combines 3 special procedures for finding underwater items: the bushy C-method (FCM) technique for clustering, a fuzzy mapping method for locating and tracking gadgets, and a fuzzy common sense method for controlling. The FCM approach is used to create wonderful clusters of objects primarily based on attributes such as salinity, water temperature, and so forth. After which the bushy mapping technique is used to decide the nearest cluster to an object. Sooner or later, the bushy good judgment technique uses input from those clusters to generate top-rated navigation paths for the item being tracked. All 3 elements of this approach paintings together to allow more than one gadgets being tracked on the same time, and it can also make certain the item is constantly headed in the direction of the most fulfilling navigation path. This version gives stepped forward efficiencies in underwater communications and can help provide real-time situational recognition.

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Optimal Location Based Fuzzy Logic Model for Underwater Communications

  • Jaishree Agrawal,
  • C. Kalaiarasan,
  • Trapty Agarwal,
  • Ananta Ojha

摘要

The most beneficial location based totally fuzzy good judgment model for Underwater Communications is an advanced and innovative solution for conditions consisting of underwater navigation and verbal exchange, which requires cautious attention of various environmental factors. This version combines 3 special procedures for finding underwater items: the bushy C-method (FCM) technique for clustering, a fuzzy mapping method for locating and tracking gadgets, and a fuzzy common sense method for controlling. The FCM approach is used to create wonderful clusters of objects primarily based on attributes such as salinity, water temperature, and so forth. After which the bushy mapping technique is used to decide the nearest cluster to an object. Sooner or later, the bushy good judgment technique uses input from those clusters to generate top-rated navigation paths for the item being tracked. All 3 elements of this approach paintings together to allow more than one gadgets being tracked on the same time, and it can also make certain the item is constantly headed in the direction of the most fulfilling navigation path. This version gives stepped forward efficiencies in underwater communications and can help provide real-time situational recognition.