Exact Prescribed-Time Distributed Optimization for Second-Order Multi-Agent Systems: A Time-Switching Control Strategy

Suna Duan, Xinchun Jia, Hongpeng Li, Teng Lv, Xiaobo Chi · IEEE Transactions on Network Science and Engineering · 2025

This paper addresses the exact prescribed-time distributed optimization problem (PT-DOP) for second-order multiagent systems (MASs) with a global optimization objective. Some bounded time-varying functions are introduced into controller gains to avoid the numerical implementation problem of unbounded time-varying control gains and ensure that the global optimization objective is reached within a prescribed time. A time-switching centralized optimization controller containing a virtual controller is developed. The exact PT-DOP of the secondorder MASs under the time-switching centralized optimization controller is solved in three phases: [0, TQ1), [TQ1,TQ2), and [TQ2, T). First, the second-order MASs are transformed into a first-order form by the time-switching centralized optimization controller during [0,TQ1). Next, the transformed first-order MASs based on the virtual controller reach the consensus in their positions at TQ2. Finally, the global optimization objective is exactly solved by the virtual controller during [TQ2, T). To avoid each agent utilizing the global gradient information of the MASs, a time-switching distributed optimization controller containing a virtual controller is also introduced, and it can guarantee the exact PT-DOP of the MASs. Three numerical simulation examples are provided to confirm the effectiveness of the proposed controllers.

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