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DESIGN OF CIRCULARLY TOWED CABLE-BODY SYSTEMS

机译:圆形牵引缆线系统的设计

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Circularly towed cable-body systems can be used to pickup and deliver payloads, provide surveillance, and tow aerial and marine vehicles. To provide a stable operating platform, the body or end mass should have a unique and stable steady state solution with small diameter so that it travels at a much slower speed than the tow vehicle. In this paper, the minimum damping is calculated that ensures the stable single valued steady state solutions as a function of non-dimensional system parameters including cable length and end mass. Steady state solutions are found using the numerical continuation and bifurcation analysis and Galerkin's method provides the linearized vibration equations that determine stability. Bifurcation analysis is also used to find the minimum achievable end mass radius. A design algorithm is presented and demonstrated using an example.
机译:圆形拖曳的电缆体系可用于拾取和提供有效载荷,提供监控和拖曳天线和船舶车辆。为了提供稳定的操作平台,主体或末端质量应具有独特稳定的稳态溶液,小直径,使其以比牵引车辆更慢的速度行进。在本文中,计算最小阻尼,以确保稳定的单值稳态解决方案,作为非维度系统参数的函数,包括电缆长度和最终质量。使用数值延续和分叉分析和Galerkin的方法提供稳态解决方案提供了确定稳定性的线性化振动方程。分叉分析还用于找到最小可实现的最终质量半径。使用示例呈现和演示设计算法。

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