• Home
  • Search
  • A Fast Optimal Coordination Method for Multiagent in Complex Environment
  • https://doi.org/10.1155/2024/5346187Copy DOI Icon

A Fast Optimal Coordination Method for Multiagent in Complex Environment

Show More
  • Abstract
  • Literature Map
  • References
  • Similar Papers
Abstract

Facing the implementation problems such like low growth reward, long training time, and poor stability of the multiagent learning methods when dealing with complex environment and more agents, this paper proposes a fast optimal coordination method for multiagent in complex environment (FOC-MACE). Firstly, the environment exploration strategy is introduced into the policy network based on the MADDPG method for higher growth rewards. Then, the parallel computing technology is adopted in the critic network, in purpose to effectively reduce the training time. These tactics together are beneficial to enhance the stability of multiagent learning. Lastly, the optimal resource allocation is carried out to realize optimal coevolution of the multiagents and further improve the learning ability of the agents’ group. To verify the effectiveness of our proposal, the FOC-MACE is compared with several advanced methods at current stage in the MPE environment. Three different experiments prove that by using our method, the growth reward is increased by up to 37.1%, the training is speed up significantly, and the stability of the method, which represented by standardized variance, is also improved. In addition, this paper validated the fast optimal coordination method for multiagent systems in the context of UAV scenarios, demonstrating the practical performance of the approach. Through comprehensive experiments and scenario validations, the study successfully confirmed the effectiveness of the proposed fast optimal coordination method for multiagent systems in complex environments.

Similar Papers
  • Research Article

Research and Application of Multi-Link Aggregation Algorithm Based on Link Priority for Telemedicine in Complex Environments.

  • Feb 01, 2026
  • Healthcare technology letters
  • Ruiqing Wang +7
  • Research Article

Environmental Effects via Frozen Density Embedding in Real-Time Time-Dependent Dirac-Kohn-Sham Theory: Solvation of Lead Halides.

  • Feb 22, 2026
  • Journal of chemical theory and computation
  • Matteo De Santis +6
  • Research Article
  • Citations37

Effects of Experience and Workplace Culture in Human-Robot Team Interaction in Robotic Surgery: A Case Study

  • Oct 04, 2012
  • International Journal of Social Robotics
  • S Cunningham +4
  • Single Report

Improved Methods for Modeling Functional Transition Metal Compounds in Complex Environments: Ground States, Excited States, and Spectroscopies

  • Jan 21, 2024
  • Hrant Hratchian +4
  • Research Article
  • Citations11

Nimble adaptation: Tailoring monitoring, evaluation, and learning methods to provide actionable data in complex environments

  • Dec 01, 2022
  • New Directions for Evaluation
  • Lauren Serpe +2
  • Conference Article

Simulation Method for Multiperiod Panoramic Operation of New Energy Power System in Complex Environment

  • Oct 01, 2021
  • Xin Zhang
  • Conference Article
  • Citations4

Mapless Path Planning of Multi-robot Systems in Complex Environments via Deep Reinforcement Learning

  • Oct 28, 2022
  • Wanbin Han +2
  • Conference Article
  • Citations3

Deployment of localization system in complex environment. Using machine learning methods

  • Sep 01, 2016
  • Quanyi Hu +4
  • Research Article

Research on uncalibrated adaptive visual servoing control based on dual-camera fusion

  • Sep 01, 2025
  • Advances in Mechanical Engineering
  • Fengze Xu +1
  • Research Article

Trajectories Planning and Tracking for Uncertain Mechanical Systems with Multi-UAV

  • Aug 19, 2025
  • Unmanned Systems
  • Rongrong Yu +4
  • Research Article

Experimental study on the impact of viscosity index and contaminant concentration on the vibration characteristics of a Dual-Disc flexible rotor

  • Feb 01, 2025
  • Journal of Physics: Conference Series
  • Ming Sun +2
  • Research Article
  • Citations1

Precise localization method for faulty idlers in belt conveyors based on visual and auditory bimodal fusion

  • Jan 30, 2025
  • Structural Health Monitoring
  • Yuan Zhang +6
  • Research Article
  • Citations23

Nonlinear modeling and multi-scale influence characteristics analysis of organic Rankine cycle (ORC) system considering variable driving cycles

  • Dec 03, 2022
  • Energy
  • Xu Ping +6
  • Research Article

Autonomous Robotic Exploration and Navigation System using Tri-layered Mapping and Geometrical Path Planning Techniques

  • Feb 01, 2021
  • IOP Conference Series: Materials Science and Engineering
  • S Gowtham +5
  • Research Article
  • Citations7

A collaborative navigation method based on partnership optimisation for clustered aircraft

  • Feb 26, 2022
  • IET Radar, Sonar & Navigation
  • Rong Wang +4
Cactus Communications logo

Copyright 2026 Cactus Communications. All rights reserved.