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Increasing combat capability through enhancing the responsiveness of wartime ammunition logistics: Measurement methodology, case studies, and policy implications.

机译:通过增强战时弹药后勤能力来提高战斗力:测量方法,案例研究和政策含义。

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While it has been long understood qualitatively that logistics responsiveness affects combat capability, this dissertation advances the thesis that increased responsiveness in wartime theater ammunition distribution, provided through improved physical resources or logistics management, can substantially and quantifiably increase combat capability. To prove that thesis, knowledge-based simulation tools recently developed by artificial intelligence research are employed to support case studies of several logistics innovations currently under consideration by senior policy-makers.; Ammunition logistics is an important military domain because successful combat operations require an adequate supply of ammunition. As war has become more dynamic and battlefields less well defined in terms of forward and rear, implementing innovations that could increase the responsiveness of the Army's multi-billion dollar wartime theater ammunition distribution system (WTADS) has been repeatedly recognized as one way to increase the combat capability of supported forces. In a period of constrained defense budgets, the fundamental policy problem is to select the most cost-effective innovations.; This dissertation discusses motivations for changing the WTADS, and next describes possible innovations including changes to the ammunition production base and peacetime stockpile, storage and transportation assets, management assets, and doctrine and standard operating procedures. The dissertation then describes an evaluation methodology, developed using knowledge-based simulation tools, applicable to many of those innovations. Several novel attributes of this methodology help relate logistics responsiveness to combat outcomes: (a) Planned consumption of ammunition is based upon a planned sequence of combat unit postures generated by markov process, and actual postures fought and ammunition consumed may randomly deviate from plans. This introduces variability and uncertainty into the system's operation. (b) Logistics management, as performed by material management centers, movement control centers, and other organizations, is explicitly modeled. (c) Multiple measures of WTADS performance are available, including expected kills of enemy weapon systems. The methodology is demonstrated through case studies in three areas: use of the palletized load system truck; highly responsive logistics for high-lethality low-tonnage ammunition types; and the maneuver-oriented ammunition distribution system. The concrete impact of logistics responsiveness upon combat capability is repeatedly shown.
机译:尽管人们已经从质量上长期理解后勤响应能力会影响作战能力,但本论文提出了这样的论点,即战时战区弹药分配的响应能力的提高(通过改进物理资源或后勤管理来提供)可以大幅度地量化提高作战能力。为了证明这一论点,人工智能研究最近开发的基于知识的模拟工具被用于支持高级决策者目前正在考虑的几种物流创新的案例研究。弹药的后勤是重要的军事领域,因为成功的战斗行动需要充足的弹药供应。随着战争变得更加活跃,战场在前后方向上的定义也越来越不明确,实施可以提高陆军数十亿美元战时战区弹药分配系统的响应能力的创新已被反复认为是增加战时弹药分配的一种方法。支援部队的作战能力。在国防预算有限的时期,基本的政策问题是选择最具成本效益的创新。本文讨论了改变WTADS的动机,然后描述了可能的创新,包括对弹药生产基地和和平时期库存,存储和运输资产,管理资产以及学说和标准操作程序的更改。然后,论文描述了一种评估方法,该方法是使用基于知识的仿真工具开发的,适用于许多创新。这种方法学的几个新颖属性有助于将后勤响应能力与战斗成果联系起来:(a)计划弹药的消耗是基于由马尔科夫过程产生的计划的作战单位态势序列,实际战斗态势和消耗的弹药可能会随机偏离计划。这将可变性和不确定性引入系统的操作中。 (b)对物资管理中心,运输控制中心和其他组织执行的后勤管理进行了明确建模。 (c)有多种衡量WTADS性能的措施,包括预期杀死敌方武器系统。通过在三个方面的案例研究证明了该方法。高致命性低吨位弹药类型的高响应性物流;以及以机动为导向的弹药分配系统。反复显示了后勤响应能力对作战能力的具体影响。

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