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An operational effectiveness analysis of legacy and future mine countermeasures systems using discrete event simulation

机译:使用离散事件模拟的遗留和未来矿山对策系统的运营有效性分析

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This paper conducts an operational analysis of legacy and future mine warfare systems using discrete event simulation. The research focuses on a comparative analysis of the MCM-I Avenger ship, supported by the MH-53E helicopter, and the Littoral Combat Ship, supported by external unmanned systems, in active, defense mine countermeasures operations. The paper develops architectural representations of the functional activities associated with mine countermeasures operations, as well as architectural representations of past, current, and potential future physical entities involved in minehunting and mine neutralization. Those architectural representations are used as the basis for the development of two distinct discrete event simulation models, one corresponding to legacy (MCM-I Avenger) operations and another corresponding to future (Littoral Combat Ship) operations. The results of the simulation are analyzed using statistical regression. The regression results indicate that the key performance drivers for both the legacy and future systems show considerable overlap, and also suggest that the legacy assets meet or exceed the performance of future assets in several measures of effectiveness. The simulation model for the future assets is reconsidered to develop recommendations regarding alterations to the future force that enable the future force to exceed the operational performance of the legacy force.
机译:本文使用离散事件模拟对遗留和未来的地雷作战系统进行了操作分析。这项研究的重点是在积极的防御性地雷对策行动中对由MH-53E直升机支持的MCM-I复仇者船和由外部无人系统支持的沿海战斗舰进行比较分析。本文开发了与地雷对策操作相关的功能活动的体系结构表示形式,以及与地雷狩猎和地雷中和有关的过去,当前和潜在的未来物理实体的体系结构表示形式。这些体系结构表示用作开发两种不同的离散事件模拟模型的基础,一种对应于传统(MCM-1 Avenger)操作,另一种对应于未来(沿海战斗舰)操作。使用统计回归分析模拟结果。回归结果表明,旧系统和未来系统的关键绩效驱动因素显示出相当大的重叠,并且还表明,在几种有效性衡量标准中,旧资产达到或超过了未来资产的绩效。重新考虑了未来资产的仿真模型,以提出有关对未来部队进行变更的建议,以使未来部队能够超越传统部队的作战表现。

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