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A new approach to low frequency wide-band projector design

机译:低频宽带投影仪设计的新方法

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Long-range, underwater, acoustic Systems require low frequency signals covering a broad frequency band. We have exploited a novel approach, using a narrowband medium-output high-efficiency resonator, which transmits a frequency sweep by mechanically tuning a resonator to match the frequency and phase of the reference signal. The design begins with a symmetrical pressure balanced Tonpilz driver consisting of two pistons separated by preloaded ceramic stacks. The driver is placed between two coaxially mounted resonator tubes. This is a simple, efficient, narrow-band projector, which operates at any ocean depth. The resonant tubes have slots (or vents) progressively covered or uncovered by sliding coaxial sleeves over them. The frequency is varied by the sleeve position. A computer-controlled, electro-mechanical actuator moves the sleeves along the resonator tubes keeping the projector in resonance at the instantaneous frequency of a swept frequency modulated signal. The projector prototype was first tested at the Woods Hole Oceanographic Institution (WHOI) dock in Woods Hole, MA, and later in the Pacific Ocean during a voyage of the research vessel "PT SUR", November 2001.
机译:远程,水下,声学系统需要覆盖宽频带的低频信号。我们利用窄带中输出高效率谐振器利用了一种新颖的方法,该高效谐振器通过机械调谐谐振器来匹配参考信号的频率和相位来发送频率扫描。该设计开头以对称的压力平衡铜缆驱动器,由由预载的陶瓷堆叠分开的两个活塞组成。驾驶员放置在两个同轴安装的谐振管之间。这是一个简单,高效,窄带投影仪,在任何海洋深度都运行。谐振管具有通过滑动同轴套筒逐渐覆盖或覆盖的槽(或通风口)。套筒位置变化频率。一种计算机控制的机电致动器沿着谐振器管移动套管,将投影仪保持在扫描频率调制信号的瞬时频率下的谐振中。投影仪原型首次在伍兹洞海洋机构(Whoi)码头在伍兹洞,马群岛,后来在太平洋,后来在2001年11月的研究船“Pt Sur”的航行期间。

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