多拦截器协同制导,解决部分无导引头的难题
Nonlinear Cooperative Salvo Guidance with Seeker-Limited Interceptors
- 用分布式观测器让无导引头拦截器也能获知目标状态
- 精确计算拦截时间,无需线性近似或小角度假设
- 适合实际中部分拦截器能力受限的协同作战场景
本文提出一种协同制导策略,用于同时拦截匀速、不机动的目标,针对仅有部分拦截器配备机载导引头的现实情况。为克服目标可观测性差异,采用固定时间分布式观测器,使无导引头拦截器可通过有导引头代理和局部邻居的信息,在有向通信拓扑下估计目标状态。不同于传统方法依赖线性化或小角度假设近似到达时间,本方法采用偏离追踪制导,对这类目标可实现到达时间的精确表达。此外,采用高阶滑模一致性协议,在有限时间内实现到达时间一致。通过仿真验证了所提制导与估计算法的有效性。
原文摘要 · Abstract (English)
This paper presents a cooperative guidance strategy for the simultaneous interception of a constant-velocity, non-maneuvering target, addressing the realistic scenario where only a subset of interceptors are equipped with onboard seekers. To overcome the resulting heterogeneity in target observability, a fixed-time distributed observer is employed, enabling seeker-less interceptors to estimate the target state using information from seeker-equipped agents and local neighbors over a directed communication topology. Departing from conventional strategies that approximate time-to-go via linearization or small-angle assumptions, the proposed approach leverages deviated pursuit guidance where the time-to-go expression is exact for such a target. Moreover, a higher-order sliding mode consensus protocol is utilized to establish time-to-go consensus within a finite time. The effectiveness of the proposed guidance and estimation architecture is demonstrated through simulations.
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