TY - GEN
T1 - Meta-level control architecture for massively multiagent simulations
AU - Yamane, Shohei
AU - Ishida, Toru
PY - 2006/12/1
Y1 - 2006/12/1
N2 - Various situations in a massively multi-agent simulation will emerge in a simulation or the period of the simulation will become too long. These situations cause problems for system operators in that each action scenario becomes too complex to maintain and a simulation costs very long time. Therefore, flexible control of the simulation, such as changing simulation speed and switching agents' action scenarios, is required. We propose a meta-scenario description language and a meta-level control architecture. The meta-scenario description language describes how to control simulations and agents based on an extended finite state machine. Meta-level control architecture achieves control on the basis of meta-scenarios provided by a meta-scenario interpreter, which controls interpreters of agents' action scenarios and the simulation environment. In addition, our proposed architecture does not lose scalability of massively multi-agent systems for some applications.
AB - Various situations in a massively multi-agent simulation will emerge in a simulation or the period of the simulation will become too long. These situations cause problems for system operators in that each action scenario becomes too complex to maintain and a simulation costs very long time. Therefore, flexible control of the simulation, such as changing simulation speed and switching agents' action scenarios, is required. We propose a meta-scenario description language and a meta-level control architecture. The meta-scenario description language describes how to control simulations and agents based on an extended finite state machine. Meta-level control architecture achieves control on the basis of meta-scenarios provided by a meta-scenario interpreter, which controls interpreters of agents' action scenarios and the simulation environment. In addition, our proposed architecture does not lose scalability of massively multi-agent systems for some applications.
UR - http://www.scopus.com/inward/record.url?scp=34548743198&partnerID=8YFLogxK
UR - http://www.scopus.com/inward/citedby.url?scp=34548743198&partnerID=8YFLogxK
U2 - 10.1109/WSC.2006.323172
DO - 10.1109/WSC.2006.323172
M3 - Conference contribution
AN - SCOPUS:34548743198
SN - 1424405017
SN - 9781424405015
T3 - Proceedings - Winter Simulation Conference
SP - 889
EP - 896
BT - Proceedings of the 2006 Winter Simulation Conference, WSC
T2 - 2006 Winter Simulation Conference, WSC
Y2 - 3 December 2006 through 6 December 2006
ER -