MoCaNA, un agent de négociation automatique utilisant la recherche arborescente de Monte-Carlo

10/16/2018
by   Cédric Buron, et al.
0

Automated negotiation is a rising topic in Artificial Intelligence research. Monte Carlo methods have got increasing interest, in particular since they have been used with success on games with high branching factor such as go.In this paper, we describe an Monte Carlo Negotiating Agent (MoCaNA) whose bidding strategy relies on Monte Carlo Tree Search. We provide our agent with opponent modeling tehcniques for bidding strtaegy and utility. MoCaNA can negotiate on continuous negotiating domains and in a context where no bound has been specified. We confront MoCaNA and the finalists of ANAC 2014 and a RandomWalker on different negotiation domains. Our agent ouperforms the RandomWalker in a domain without bound and the majority of the ANAC finalists in a domain with a bound.

READ FULL TEXT

page 1

page 2

page 3

page 4

research
03/29/2019

MCTS-based Automated Negotiation Agent (Extended Abstract)

This paper introduces a new Negotiating Agent for automated negotiation ...
research
11/26/2021

A Fast Evolutionary adaptation for MCTS in Pommerman

Artificial Intelligence, when amalgamated with games makes the ideal str...
research
03/14/2023

Beyond Games: A Systematic Review of Neural Monte Carlo Tree Search Applications

The advent of AlphaGo and its successors marked the beginning of a new p...
research
01/08/2021

Monte Carlo Methods for Calculating Shapley-Shubik Power Index in Weighted Majority Games

This paper addresses Monte Carlo algorithms for calculating the Shapley-...
research
03/30/2020

Parallelization of Monte Carlo Tree Search in Continuous Domains

Monte Carlo Tree Search (MCTS) has proven to be capable of solving chall...
research
02/11/2021

Hedging of Financial Derivative Contracts via Monte Carlo Tree Search

The construction of approximate replication strategies for pricing and h...
research
09/04/2009

A Monte Carlo AIXI Approximation

This paper introduces a principled approach for the design of a scalable...

Please sign up or login with your details

Forgot password? Click here to reset