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Single- and three-axis geophone: footstep detection with bearing estimation, localization, and tracking

机译:单轴和三轴地震孔:带轴承估计,本地化和跟踪的脚步检测

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摘要

Tactical capabilities of single and three axis geophones for seismic detection and bearing estimation for homeland security and defense applications are described. It is shown that typically three axis geophones yield a high bearing estimation error. An alternate bearing estimation approach is based on using the time delay in footstep signal detection from three triangulated single axis vertical geophones. In this approach the standard deviation of the bearing estimation error is less than 12 degrees for a walking person distance of 10 to 70m and geophone distances of 8 to 9 m. We find that using the three-axis geophone approach makes it harder for path tracking and bearing estimation within the tactical zone area. We report that a single-axis geophone approach for riangulation of walking person is more effective. In addition, road monitoring is also more efficient using a single-axis geophone approach. We compare the relative and absolute improvement of bearing estimation probability for road monitoring using three single-axis geophones versus 1, 2 and 3 three-axis geophones. We will also discuss the use of single axis vertical geophone sets for monitoring various zone sizes.
机译:描述了用于国土安全和防御应用的地震检测和轴承估计的单一和三轴地震检波的战术能力。结果表明,通常,三个轴地震检塞器产生高轴承估计误差。替代轴承估计方法是基于从三个三角形单轴垂直地理孔的脚步信号检测时间延迟。在这种方法中,轴承估计误差的标准偏差对于步行人的距离为10至70米的步行距离小于12度,并且电影距为8至9米。我们发现,使用三轴地震孔方法使得在战术区区域内的路径跟踪和轴承估计变得更加困难。我们报告说,步行人的rianculation的单轴地震静脉方法更有效。此外,使用单轴地震检波器方法也更有效地进行道路监控。我们使用三个单轴地理位音与1,2和3三轴地震孔进行比较道路监控轴承估计概率的亲属和绝对改善。我们还将讨论使用单轴垂直地震孔集以监控各种区域尺寸。

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