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Investigation and Design of a Towable Hydrophone Array for General Ocean Sensing

机译:用于一般海洋传感的可拖拉水听器阵列的研究与设计

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An eight-element oil-filled hydrophone array is used to measure the acoustic field in littoral waters. This prototype array was deployed during an experiment between Jeffrey's Ledge and the Stellwagen Bank region off the coast of Rockport, Massachusetts USA. During the experiment, several humpback whale vocalizations, distant ship tonals and high frequency conventional echosounder pings were recorded. Visual confirmation of humpback moving in bearing relative to the array verifies the directional sensing from array beamforming. During deployment, the array is towed at speeds varying from 4-7 kts in water depths of roughly 100 m with conditions at sea state 2 to 3. This array system consists of a portable winch with array, tow cable and 3 water-resistant boxes housing electronics. This system is deployed and operated by 2 crew members onboard a 13 m commercial fishing vessel during the experiment. Non-acoustic sensor (NAS) information is obtained to provide depth, temperature, and heading data using commercial off the shelf (COTS) components utilizing RS485/232 data communications. Acoustic data sampling was performed at 8 kHz, 30 kHz and 100 kHz with near real-time processing of data and enhanced Signal to Noise Ratio (SNR) from beamforming. The electrical system components are deployed with 3 stacked electronics boxes housing power, data acquisition and data processing components in water resistant compartments. A laptop computer with 8 TB of external storage and an independent Global Positioning System (GPS) antenna is used to run Passive Ocean Acoustic Waveguide Remote Sensing (POAWRS) software providing beamformed spectrogram data and live NAS data with capability of capturing several days of data. The acquisition system consists of Surface Mount Device (SMD) pre-amplifiers with filter to an analog differential pair shipboard COTS acquisition system. Pre-amplifiers are constructed using SMD technology where components are pressure tolerant and potting is not necessary. Potting of connectors, electronics and hydrophones via 3D printed molding techniques will be discussed. Array internal components are manufactured with Thermoplastic Polyurethane (TPU) 3D printed material to dampen array vibrations with forward and aft vibration isolation modules (VIM). Polyurethane foam (PUF) used to scatter breathing waves and dampen contact from wires inside the array without attenuating high frequencies and allowing for significant noise reduction. A single Tygon array section with a length of 7.5 m and diameter of 38 mm contains 8 transducer elements with a spacing of 75 cm (1 kHz design frequency). Pre-amplifiers and NAS modules are affixed using Vectran and steel wire rope positioned by swaged stops along the strength member. The tow cable length is 100 m with a diameter of 22 mm that is potted to a hose adapter to break out 12 braided copper wire twisted pair conductors and terminates the tow cable Vectran braid. This array in its current state of development is a low-cost alternative to obtain quality acoustic data from a towed array system. Used here for observation of whale vocalizations, this type of array also has many applications in military sonar and seismic surveying. Maintenance on the array can be performed without the use of special facilities or equipment for dehosing and conveniently uses castor oil as an environmentally safe pressure compensating and coupling fluid. Array development including selection of transducers, NAS modules, acoustic acquisition system, array materials and method of construction with results from several deployments will be discussed. We also present beamformed spectrograms containing humpback whale downsweep moans and underwater blowing (bubbles) sounds associated with feeding on sand lance (Ammodytes dubius).
机译:八元素充油水听器阵列用于测量沿海水域的声场。这个原型阵列是在杰弗里·莱奇(Jeffrey's Ledge)和美国马萨诸塞州罗克波特(Rockport)沿海的斯泰尔瓦根银行(Stellwagen Bank)地区之间进行的一项实验中部署的。在实验过程中,记录了几次座头鲸的发声,远处的船声和高频常规回声。座头相对于阵列的相对移动的视觉确认可验证阵列波束形成的方向感测。在部署过程中,在海洋状况2到3的条件下,以大约7 kts的速度在大约100 m的水深中拖曳阵列。该阵列系统由一个带有阵列的便携式绞车,拖缆和3个防水盒组成房屋电子产品。实验期间,该系统由2名船员在13 m商业捕鱼船上部署和操作。使用RS485 / 232数据通信使用商用现货(COTS)组件获取非声学传感器(NAS)信息,以提供深度,温度和航向数据。声音数据采样是在8 kHz,30 kHz和100 kHz进行的,数据的处理接近实时,并且波束形成的信噪比(SNR)增强。电气系统组件与3个堆叠的电子箱一起部署,在防水隔间中容纳电源,数据采集和数据处理组件。一台具有8 TB外部存储和一台独立全球定位系统(GPS)天线的便携式计算机用于运行无源海洋声波波导遥感(POAWRS)软件,该软件提供波束成形的频谱图数据和实时NAS数据,并能够捕获数天的数据。该采集系统由表面贴装设备(SMD)前置放大器和带滤波器的模拟差分对船上COTS采集系统组成。前置放大器是使用SMD技术构造的,其中的元件具有耐压性,因此无需灌封。将讨论通过3D打印成型技术浇注连接器,电子设备和水听器。阵列内部组件使用热塑性聚氨酯(TPU)3D打印材料制造,以通过前后振动隔离模块(VIM)抑制阵列振动。聚氨酯泡沫(PUF)用于散射呼吸波并抑制阵列内部电线的接触,而不会衰减高频并显着降低噪音。长度为7.5 m,直径为38 mm的单个Tygon阵列部分包含8个间距为75 cm(设计频率为1 kHz)的换能器元件。前置放大器和NAS模块使用Vectran和钢丝绳固定,这些钢丝绳由沿强度构件的型锻挡块定位。拖缆长度为100 m,直径为22 mm,该电缆被装到软管适配器上,以断开12条编织的铜线双绞线导体,并终止拖缆Vectran编织物。该阵列目前处于发展状态,是一种低成本的替代方案,可从拖曳式阵列系统中获取高质量的声学数据。在此用于观察鲸鱼发声,这种类型的阵列在军事声纳和地震勘测中也有许多应用。无需维护专用设备或阵列即可进行阵列维护,并且可以方便地使用蓖麻油作为对环境安全的压力补偿和耦合流体。将讨论阵列开发,包括换能器,NAS模块,声学采集系统,阵列材料和构造方法的选择,以及几种部署的结果。我们还介绍了波束成形的频谱图,其中包含座头鲸下沉的mo吟声和水下吹(气泡)声,这些声音与以长矛(Ammodytes dubius)为食有关。

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