The dynamic management of the parameters of the probing signals at the geodynamic monitoring of the karst processes

N. Dorofeev, O. Kuzichkin
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引用次数: 1

Abstract

The principle of dynamic management of the measuring system with the bioelectric geodynamic monitoring is considered in the article. It is noted that the sources and measuring sensors are spatially fixed on the a priori information on location and form of karst irregularities. The required accuracy and reliability of measurements may be ensured by means of controlling parameters of the probing signals. The algorithm for dynamic formation of the probing signals in a distributed system of the low-frequency electro-location monitoring of karst anomalies has been designed. This dynamic management of electrical installation in the registration of geodynamic changes in the geological basis of technical objects is based on a priori information on the form of karst heterogeneity and respectively selection of the elementary geo-electric model. These methods may be used at organization of regime for geodynamic observations, at design of geodynamic monitoring system in the area of the proposed karst suffusion. It is shown that the proposed algorithm is useful for forming the probing signals to optimize geodynamic-monitoring system and enables identification of geodynamic behavior of the object at the geodynamic monitoring and improvement of noise immunity of the whole system.
岩溶过程地球动力学监测中探测信号参数的动态管理
本文探讨了生物电地球动力监测测量系统的动态管理原理。研究发现,震源和测量传感器在空间上依赖于岩溶不规则形态和位置的先验信息。通过控制探测信号的参数,可以保证测量所需的精度和可靠性。设计了喀斯特低频电定位监测分布式系统中探测信号的动态生成算法。这种电力装置动态管理在登记地球动力变化的地质基础技术对象的基础上,是基于对喀斯特非均质形态的先验信息和分别选取的基本地电模型。这些方法可用于喀斯特浸没区地球动力观测制度的组织和地球动力监测系统的设计。结果表明,该算法可用于形成探测信号以优化地球动力监测系统,并可在地球动力监测时识别目标的地球动力行为,提高整个系统的抗噪声能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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