船员
计算机科学
运筹学
门
启发式
整数规划
紧急疏散
整数(计算机科学)
过程(计算)
海军建筑
非线性系统
海洋工程
工程类
算法
人工智能
航空学
地质学
物理
操作系统
程序设计语言
海洋学
量子力学
作者
Francisco Pérez‐Villalonga,Javier Salmerón,R. Kevin Wood
摘要
Abstract We propose a dynamic escape route system for emergency evacuation of a naval ship. The system employs signals that adapt to the causative contingency and the crew's physical distribution about the ship. A mixed‐integer nonlinear programming model, with underlying network structure, optimizes the evacuation process. The network's nodes represent compartments, closures (e.g., doors and hatches) and intersections, while arcs represent various types of passageways. The objective function integrates two potentially conflicting factors: average evacuation time and the watertight and airtight integrity of the ship after evacuation. A heuristic solves the model approximately using a sequence of mixed‐integer linear approximating problems. Using data for a Spanish frigate, with standard static routes specified by the ship's designers, computational tests show that the dynamic system can reduce average evacuation times, nearly 23%, and can improve a combined measure of ship integrity by up to 50%. In addition, plausible design changes to the frigate yield further, substantial improvements. Published 2008 Wiley Periodicals, Inc. Naval Research Logistics 2008
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