On the design of behavior-based multi-robot teams
نویسنده
چکیده
|Real-world applications that are ideal for robotic solutions are very complex and challenging. Many of these applications are set in dynamic environments that require capabilities distributed in functionality, space, or time. These applications, therefore, often require teams of robots to work together cooperatively to successfully address the mission. While much research in recent years has addressed the issues of autonomous robots and multi-robot cooperation, current robotics technology is still far from achieving many of these real world applications. We believe that two primary reasons for this technology gap are that (1) previous work has not adequately addressed the issues of fault tolerance and adaptivity in multi-robot teams, and (2) existing robotics research is often geared at speci c applications, and is not easily generalized to di erent, but related, applications. This paper addresses these issues by rst describing the design issues of key importance in these real-world cooperative robotics applications | fault tolerance, reliability, adaptivity, and coherence. We then present a general architecture addressing these design issues | called ALLIANCE | that facilitates multi-robot cooperation of smallto mediumsized teams in dynamic environments, performing missions composed of loosely coupled subtasks. We illustrate the generality of this architecture by describing two very di erent proof-of-concept implementations of this architecture: a janitorial service mission, and a bounding overwatch mission.
منابع مشابه
Particle Swarm Optimization Based Parameter Identification Applied to a Target Tracker Robot with Flexible Joint
This paper focuses on parameter identification of a target tracker robot possessing flexible joints using particle swarm optimization (PSO) algorithm. Since, belt and pulley mechanisms are known as flexible joints in robotic systems, their elastic behavior affecting a tracker robot is investigated in this work. First, dynamic equations governing the robot behavior are extracted taking into acco...
متن کاملPareto design of fuzzy tracking control based on the particle swarm optimization algorithm for a walking robot in the lateral plane on slope
Many researchers have controlled and analyzed biped robots that walk in the sagittal plane. Nevertheless, walking robots require the capability to walk merely laterally, when they are faced with the obstacles such as a wall. In walking robot field, both nonlinearity of the dynamic equations and also having a tracking system cause an effective control has to be utilized to address these problems...
متن کاملDesign On-Line Tunable Gain Artificial Nonlinear Controller
One of the most important challenges in nonlinear, multi-input multi-output (MIMO) and time variant systems (e.g., robot manipulator) is designing a controller with acceptable performance. This paper focused on design a new artificial non linear controller with on line tunable gain applied in the robot manipulator. The sliding mode fuzzy controller (SMFC) was designed as 7 rules Mamdani’s infer...
متن کاملDesign On-Line Tunable Gain Artificial Nonlinear Controller
One of the most important challenges in nonlinear, multi-input multi-output (MIMO) and time variant systems (e.g., robot manipulator) is designing a controller with acceptable performance. This paper focused on design a new artificial non linear controller with on line tunable gain applied in the robot manipulator. The sliding mode fuzzy controller (SMFC) was designed as 7 rules Mamdani’s infer...
متن کاملSolution Pattern for Multi-Robot Coordination exemplified by Humanoid Soccer Game
Robotic soccer teams are multi-robot systems that react autonomously and flexibly to dynamic game environment. They can follow many strategies, some of which are imitation of human soccer teams and require multiple robots to perform collectively. The development of such systems exceeds the concept of conventional mechatronic products. During the early development phase, fundamental design probl...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- Advanced Robotics
دوره 10 شماره
صفحات -
تاریخ انتشار 1995