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A low-noise MEMS accelerometer for unattended ground sensor applications

机译:用于无人值守地面传感器应用的低噪声MEMS加速度计

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摘要

A low-noise micro-machined servo accelerometer has been developed for use in Unattended Ground Sensors (UGS). Compared to conventional coil-and-magnet based velocity transducers, this Micro-Electro-Mechanical System (MEMS) accelerometer offers several key benefits for battlefield monitoring. Many UGS require a compass to determine deployment orientation with respect to magnetic North. This orientation information is critical for determining the bearing of incoming signals. Conventional sensors with sensing technology based on a permanent magnet can cause interference with a compass when used in close proximity. This problem is solved with a MEMS accelerometer which does not require any magnetic materials. Frequency information below 10 Hz is valuable for identification of signal sources. Conventional seismometers used in UGS are typically limited in frequency response from 20 to 200 Hz. The MEMS accelerometer has a flat frequency response from DC to 5 kHz. The wider spectrum of signals received improves detection, classification and monitoring on the battlefield. The DC-coupled output of the MEMS accelerometer also has the added benefit of providing tilt orientation data for the deployed UGS. Other performance parameters of the MEMS accelerometer that are important to UGS such as size, weight, shock survivability, phase response, distortion, and cross-axis rejection will be discussed. Additionally, field test data from human footsteps recorded with the MEMS accelerometer will be presented.
机译:已开发出一种低噪声微机械伺服加速度计,用于无人值守地面传感器(UGS)。与传统的基于线圈和磁铁的速度传感器相比,该微机电系统(MEMS)加速度计为战场监控提供了多个关键优势。许多UGS需要使用指南针来确定相对于磁北的部署方向。该方向信息对于确定输入信号的方位至关重要。传统的具有基于永磁体的传感技术的传感器在近距离使用时可能会对罗盘造成干扰。使用不需要任何磁性材料的MEMS加速度计解决了这个问题。低于10 Hz的频率信息对于识别信号源很有价值。 UGS中使用的常规地震仪通常在20至200 Hz的频率响应范围内受到限制。 MEMS加速度计具有从DC到5 kHz的平坦频率响应。接收到的信号范围更广,可以改善战场上的检测,分类和监视。 MEMS加速度计的直流耦合输出还具有为部署的UGS提供倾斜方向数据的额外好处。将讨论MEMS加速度计对UGS至关重要的其他性能参数,例如尺寸,重量,抗冲击性,相位响应,失真和跨轴抑制。此外,还将展示用MEMS加速度计记录的来自人的脚步的现场测试数据。

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