为了提高舰船战斗过程中的生存能力,要求其电力系统具有良好的自动恢复能力。采用图迹分析(GTA)方法建立船舶综合电力系统GTA模型,将其存储在计算机内存容器中,容器外的算法通过迭代器获取容器内组件信息,并将计算结果通过迭代器赋给容器内的组件。算法可以处理具有回路的电力系统及其负载具有多优先级的重构问题,在保障高优先级负载供电的前提下恢复尽可能多的负载的供电。通过典型舰船故障案例验证了所提出算法的可行性和有效性。
In order to pursue the best ship performance, it is very important to restore the electric power supply as much as possible when an internal system error or any external contingency from battle occur. A graph trace analysis (GTA) based approach is applied to warship integrated power system models, the objects in the model are stored together as a system in a container. This container provides iterators which algorithms use to access data, perform analyses, and control components. As a consequence, the novel reconfiguration algorithm can handle target configurations systems with loops and the loads classified into many priority. Simulation results demonstrate that this method is feasible and effective.