Hybrid power-an enabling technology for future combat systems

M.M. Freeman, M. Perschbacher
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引用次数: 3

Abstract

Futuristic weapon systems, including lasers, high power microwave systems, and electric guns may have potential to substantially increase capability to defeat enemy forces with significantly less logistics burden. However, a vast majority of the military community does not project that these weapons will be incorporated into the designs of ground combat platforms in the near future. The major barrier preventing advanced concepts from being weaponized is the lack of compact pulsed power systems required for operating them. The DARPA Combat Hybrid Power Systems (CHPS) program was established to investigate hybrid electric power systems that might provide all the energy and power needs of improved future combat vehicles specifically the transient, continuous and pulsed power necessary to drive advanced weapons systems, mobility systems, communications systems and protective systems. By exploiting the benefits of hybrid power, power management and power sharing, it may become possible to design future combat vehicles with advanced weapons and protection systems, while reducing logistical requirements (by increasing efficiency) and reducing overall weight and volume. This paper describes the CHPS program goals and accomplishments as well as provide insight on how the CHPS approach to design of future vehicles is an essential step toward demonstrating lightweight, future ground combat vehicles capable of improved mobility, lethality, survivability and sustainability.
混合动力——未来作战系统的使能技术
未来武器系统,包括激光、高功率微波系统和电炮,可能有潜力在显著减少后勤负担的情况下大幅提高击败敌军的能力。然而,绝大多数军界并不认为这些武器将在不久的将来被纳入地面作战平台的设计中。阻止先进概念被武器化的主要障碍是缺乏操作它们所需的紧凑脉冲功率系统。DARPA战斗混合动力系统(CHPS)项目的建立是为了研究混合动力系统,该系统可以提供改进的未来战斗车辆的所有能量和动力需求,特别是驱动先进武器系统、机动系统、通信系统和防护系统所需的瞬态、连续和脉冲动力。通过利用混合动力、动力管理和动力共享的优势,有可能设计出具有先进武器和保护系统的未来战斗车辆,同时减少后勤需求(通过提高效率)并减少整体重量和体积。本文描述了CHPS项目的目标和成就,并提供了对未来车辆设计的CHPS方法如何成为展示能够改进机动性、致命性、生存性和可持续性的轻型未来地面作战车辆的重要一步的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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