首页> 外文期刊>IFAC PapersOnLine >Distributed Negotiation with a Class of Quadratic Cost Functions * * The authors acknowledge MCyT (Grant DPI2013-44135-R) and AEI/FEDER (Grant TEC2016-80242-P) for funding this work.
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Distributed Negotiation with a Class of Quadratic Cost Functions * * The authors acknowledge MCyT (Grant DPI2013-44135-R) and AEI/FEDER (Grant TEC2016-80242-P) for funding this work.

机译:具有一类二次成本函数的分布式协商 * * 作者承认MCyT(Grant DPI2013-44135-R)和AEI / FEDER(Grant TEC2016-80242-P)为这项工作提供资金。

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摘要

This paper deals with the conflicting situation in which a set of players (or agents) have local objective functions, but depending on both: local decisions and decisions of other players. In particular, the cost functions are quadratic in the local decision variables, but they are linearly coupled with the decisions of neighbors. The players follow a game-based distributed negotiation pursuing to reach an equilibrium that satisfies them. This work derives the conditions for the existence, uniqueness and stability of Nash equilibriums when the decision variables are not constrained. For the case of constrained decision variables, the paper develops sufficient conditions for the convergence to these equilibriums. These results find application in distributed agent-based estimation, when the amount of information to be transmitted is limited.
机译:本文讨论了一组参与者(或代理人)具有局部目标功能,但同时取决于本地决策和其他参与者的决策的冲突情况。具体而言,成本函数在局部决策变量中是二次函数,但它们与邻居的决策线性关联。玩家遵循基于游戏的分布式协商,力求达到满足他们的平衡。当决策变量不受约束时,这项工作推导了纳什均衡存在,唯一性和稳定性的条件。对于约束决策变量的情况,本文为收敛到这些平衡条件提供了充分的条件。当要传输的信息量受到限制时,这些结果可用于基于分布式代理的估计。

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