Abstract:Deadlocks represent situations in which two participants are waiting for each other to finish an activity so that neither of them will ever finish. Deadlocks can occur in complex computer-integrated systems, such as flexible and selforganizing production systems. As deadlocks bring production to halt, methods for deadlock control in production systems are widely studied. Yet most algorithms proposed are not suited for the use in decentral multi-agent systems, as they require central control or can not handle c… Show more
“…One limitation of our model is that it cannot produce assignments where an agent receives products it has already received before. While this modeling prevents deadlocks, it also restricts the feasible system configurations severely as it rules out cyclic configurations [21]. In our following evaluation, we additionally assume that all stationary agents like robots and storages are connected to all carts but not to other stationary agents.…”
“…One limitation of our model is that it cannot produce assignments where an agent receives products it has already received before. While this modeling prevents deadlocks, it also restricts the feasible system configurations severely as it rules out cyclic configurations [21]. In our following evaluation, we additionally assume that all stationary agents like robots and storages are connected to all carts but not to other stationary agents.…”
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