← Back to Research Radar
Scientific Literature Scientific Literature

Analysis of advanced modified tuna swarm optimization technique for path planning of underwater vehicle

Abhijit Mahapatro, Dayal R. Parhi, Sujeet Kumar Patro
April 10, 2026
Published Date

Research Abstract & Technology Focus

Purpose Path planning with obstacle avoidance is crucial for navigating an autonomous underwater vehicle (AUV) in an unknown and obstacle-rich three-dimensional space. This paper aims to develop an optimized obstacle-free path in a three-dimensional environment using an Advanced Modified Tuna Swarm Optimization (AMTSO) technique. Design/methodology/approach Three-dimensional simulations of underwater environments with different obstacles are created using MATLAB to perform tests such as obstacle avoidance, wall following, avoiding dead ends and path planning in a cluttered environment. There are four techniques in AMTSO for search; each is selected based on the requirement and is independent of the other. Different tests were conducted for different scenarios in underwater navigation to evaluate the controller’s ability to address unforeseen conditions. Findings The path planning ability of the controller, which includes short, obstacle-free and smooth path generation, tested under simulated conditions, is compared with conventional techniques, where the proposed technique shows better navigational parameters. The proposed technique is also tested to determine the robustness and effectiveness of the controller, and the navigational data are compared with a recently developed technique used in AUV navigation based on improved ant colony optimization. In this test, the proposed controller has a shorter path than recently developed techniques. Originality/value In this research, the TSO is extensively modified; an extra handling feature is introduced, and changes are made in the spiral foraging phase to fulfil the objective of the path planning as the traditional TSO is susceptible to falling into local minima and premature convergence.
Read Full Literature

Correlated Market Trend: Ant Colony Optimization Algorithms

Bridging academia to market: The 60-day public search velocity mapping directly to the core technology of this paper. Dashed line represents 7-day moving average.

AI Semantic Synergy Context

Connecting this academic literature to real-world market discussions and products.

openalex.org › research concept
52%
🔥

Analysis of advanced modified tuna swarm optimization technique for path planning of underwater vehicle

Purpose Path planning with obstacle avoidance is crucial for navigating an autonomous underwater vehicle (AUV) in an unknown and obstacle-rich three-dimensional space. This paper aims to develop an...

crossref.org › academic paper
0%

Obstacle Avoidance and Path Planning Methods for Autonomous Navigation of Mobile Robot

Path planning creates the shortest path from the source to the destination based on sensory information obtained from the environment. Within path planning, obstacle avoidance is a crucial task in ...

openalex.org › research concept
0%

Adaptive energy-efficient and secure clustering-based routing architecture for underwater wireless sensor networks in marine environmental and ecosystem monitoring

Introduction Reliable long-term monitoring of coral reefs and other marine ecosystems is limited by the harsh underwater environment, restricted battery capacity of sensor nodes, and the high energ...

openalex.org › research concept
0%

Instantaneous Planning, Control and Safety for Navigation in Unknown Underwater Spaces

Navigating autonomous underwater vehicles (AUVs) in unknown environments is significantly challenging due to poor visibility, weak signal transmission, and dynamic water currents. These factors pos...

crossref.org › academic paper
0%

Autonomous port management based AGV path planning and optimization via an ensemble reinforcement learning framework

No description provided.

Frequently Asked Questions (FAQ)

Curated market intelligence mapped to this research.

What is the core focus of the research titled 'Analysis of advanced modified tuna swarm optimization technique for path planning of underwater vehicle'?

This literature focuses on: Purpose Path planning with obstacle avoidance is crucial for navigating an autonomous underwater vehicle (AUV) in an unknown and obstacle-rich three-dimensional space. This paper aims to develop an optimized obstacle-free path in a three-dimension...

What other academic literature is closely related to 'Analysis of advanced modified tuna swarm optimization technique for path planning of underwater vehicle'?

Yes, highly correlated activity was mapped. An entry titled 'Analysis of advanced modified tuna swarm optimization technique for path planning of underwater vehicle' discusses this: Purpose Path planning with obstacle avoidance is crucial for navigating an autonomous underwater vehicle (AUV) in an unknown and obstacle-rich thre...

Cite this Market Intelligence Report

Reference our AI-mapped synergy between this research and the commercial market to instantly build authority.