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The Jellyfish: 'Smart' Electro-Active Polymers for an autonomous distributed sensing node

机译:水母:用于自主分布式传感节点的“智能”电活性聚合物

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The US Navy has recently placed emphasis on deployable, distributed sensors for Force Protection, Anti-Terrorism and Homeland Defense missions. The Naval Undersea Warfare Center has embarked on the development of a self-contained deployable node that is composed of electro-active polymers (EAP) for use in a covert persistent distributed surveillance system. Electro-Active Polymers (EAP) have matured to a level that permits their application in energy harvesting, hydrophones, electro-elastic actuation and electroluminescence. The problem to resolve is combining each of these functions into an autonomous sensing platform. The concept presented here promises an operational life several orders of magnitude beyond what is expected of a Sonobuoy due to energy conservation and harvesting, and at a reasonable cost. The embodiment envisioned is that of a deployed device resembling a jellyfish, made in most part of polymers, with the body encapsulating the necessary electronic processing and communications package and the tentacles of the jellyfish housing the sonar sensors. It will be small, neutrally buoyant, and will survey the water column much in the manner of a Cartesian Diver. By using the Electro-Active Polymers as artificial muscles, the motion of the jellyfish can be finely controlled. An increased range of detection and true node autonomy is achieved through volumetric array beamforming to focus the direction of interrogation and to null-out extraneous ambient noise.
机译:美国海军最近将重点放在用于部队保护,反恐和国土防御任务的可部署分布式传感器上。海军海底作战中心已着手开发一个由电活性聚合物(EAP)组成的自包含可部署节点,用于隐蔽的持久分布式监视系统。电活性聚合物(EAP)的成熟程度使其可以应用于能量收集,水听器,电弹性致动和电致发光。要解决的问题是将所有这些功能组合到一个自主的感应平台中。此处提出的概念以合理的成本保证了使用寿命,比声纳浮标的预期寿命高出几个数量级。设想的实施例是一种展开的装置,该装置类似于水母,由聚合物的大部分制成,主体封装了必要的电子处理和通信包装,并且水母的触角容纳声纳传感器。它将很小,具有中性浮力,并且将以笛卡尔潜水员的方式进行水柱测量。通过将电活性聚合物用作人造肌肉,可以精确控制水母的运动。通过体积阵列波束成形来集中检测的方向并消除外部环境噪声,可以实现更大范围的检测和真正的节点自治。

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