Byzantine容错
计算机科学
拜占庭式建筑
数学优化
功能(生物学)
最优化问题
量子拜占庭协议
分布式计算
数学
容错
算法
地理
进化生物学
生物
考古
作者
Lili Su,Nitin H. Vaidya
标识
DOI:10.1109/tac.2020.3008139
摘要
We consider the problem of multiagent optimization wherein an unknown subset of agents suffer Byzantine faults and thus behave adversarially. We assume that each agent i has a local cost function f i , and the overarching goal of the good agents is to collaboratively minimize a global objective that properly aggregates these local cost functions. To the best of our knowledge, we are among the first to study Byzantine-resilient optimization where no central coordinating agent exists, and we are the first to characterize the structures of the convex coefficients of the achievable global objectives. Dealing with Byzantine faults is very challenging. For example, in contrast to fault-free networks, reaching Byzantine-resilient agreement even in the simplest setting is far from trivial. We take a step toward solving the proposed Byzantine-resilient multiagent optimization problem by focusing on scalar local cost functions. Our results might provide useful insights for the general local cost functions.
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