Multi-dimensional, assured, robust communications for an on-the-move network (MARCON-i)

M. Acriche, C. Holsinger, A. Staikos, J. Dimarogonas, R. Sonalkar
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引用次数: 12

Abstract

This paper describes a new research and development program called multi-dimensional, assured, robust communications for an on-the-move network (MARCON-i) that recently began at Communications-Electronics Research Development and Engineering Center (CERDEC), Ft. Monmouth NJ. The MARCON-i effort focused on the development and integration of two complementary networking technologies needed to achieve increased bandwidth and greater connectivity on the battlefield: proactive diverse link selection (PAD-LS) and directional networking technologies (DNT). The first technology area, PAD-LS, was being developed to enable automatic link selection over multiple, widely varying transmission paths to bypass congestion and/or outages. This is an important element needed to enhance both communications survivability and network capacity. DNT was envisioned to integrate advanced directional networking technologies to provide additional capacity, anti jam/low probability of intercept (AJ/LPI), and network robustness. The program began in FY 2005 and was scheduled to run through FY 2009. Based on shifts in research and development priorities, the MARCON-i program was refocused to concentrate on the challenge of limited network reliability resulting from the inability to make optimal use of all available link types, simultaneously. The resulting program will look to leverage the PAD-LS technologies investigated under the MARCON-i program. This new program is currently entitled the proactive integrated link selection for network robustness (PILSNER) army technology objective (demonstration) (ATO(D)) program and is scheduled to run from FY 2006 through FY 2009.
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移动网络(marcon - 1)的多维、可靠、健壮通信
本文描述了一个新的研究和开发项目,称为多维、可靠、健壮的移动网络通信(MARCON-i),该项目最近在新泽西州蒙默斯堡的通信电子研究开发和工程中心(CERDEC)开始。marcon - 1的工作重点是开发和集成两种互补的网络技术,以实现战场上更高的带宽和更大的连通性:主动多样化链路选择(PAD-LS)和定向网络技术(DNT)。第一个技术领域是PAD-LS,正在开发中,以实现在多个广泛变化的传输路径上的自动链路选择,以绕过拥塞和/或中断。这是提高通信生存能力和网络容量所需的一个重要因素。设想DNT集成先进的定向网络技术,以提供额外的容量、抗干扰/低截获概率(AJ/LPI)和网络鲁棒性。该项目开始于2005财政年度,计划贯穿2009财政年度。基于研发优先级的变化,marcon - 1项目重新聚焦于由于无法同时优化所有可用链路类型而导致的有限网络可靠性挑战。最终的项目将寻求利用在marcon - 1项目下研究的PAD-LS技术。这个新项目目前被命名为网络稳健性(PILSNER)陆军技术目标(演示)(ATO(D))项目的主动集成链路选择,计划从2006财年运行到2009财年。
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