It is very important to study the fast algorithm for the visibility of LEO satellites to improve the efficiency especially in event-driven and time-stepped real-time simulation environments.
研究LEO卫星可见性的快速算法在事件驱动和时间步进的实时仿真环境中具有非常重要的意义。
The model includes an event-driven controller, a time-driven sensor and actuator. GPC algorithm is adopted in the controller.
针对这个问题,本文介绍了一个控制器由事件驱动、传感器和执行器由时间驱动的分布式系统模型。
The main contents of this dissertation are as follows. A structurized attitude pointing algorithm based on target vectors, was constructed in an event-driven manner.
论文的主要研究内容包括:从事件驱动的思想出发,建立了基于目标矢量的姿态定向结构化算法。
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