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Decision Analysis of Preferred Methods for Locating Underground Conduits

机译:地下管道定位首选方法的决策分析

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The New Jersey DOT (NJDOT) operates and maintains a network of thousands of kilometers of conduits, many carrying fiberoptic cables that are vital to the state's communication system. These primarily nonmetallic conduits frequently must be located and marked to avoid damage from construction. By design they can be located using a system of trace wires (TW) and radio-frequency detection. However, for various reasons the TW are missing and thus not functioning over a significant portion of the network. The purpose of the research reported in this paper was to analyze and improve the inventory information base, and find and compare effective methods for locating these conduits. Any candidate solution had to meet requirements for accuracy and depth sensitivity, be practical to implement, cost-effective, work with both metallic and plastic conduits, and be reliable. Innovative methods for locating underground conduits were investigated and evaluated with respect to various conditions. Validated approaches include enhancements to current TW methods, a new acoustic transmission (AT) method, and the ground-penetrating radar (GPR) method. The benefits of optimized location include the following: (1) reduced cost and time from more expedient systems for locating conduits, (2) less accidental damage to conduits, (3) avoidance of connectivity problems and loss of crucial communications, and (4) preservation of the fiber-optic network. A decision process identifying the optimal solution with respect to various conditions was developed and is presented in this paper. To enable the best application of the decision approach, the underlying conduit and surrounding-environment data was improved using cross-referenced geographic soil map data to enable proper selection of location technologies.
机译:新泽西州交通运输部(NJDOT)运行并维护着数千公里长的管道网络,其中许多管道承载着对州通信系统至关重要的光纤电缆。这些主要是非金属的导管必须经常放置和标记,以免损坏结构。通过设计,可以使用走线(TW)和射频检测系统对它们进行定位。但是,由于各种原因,TW丢失了,因此无法在网络的很大一部分上运行。本文报道的研究目的是分析和改进库存信息库,并找到和比较定位这些管道的有效方法。任何候选解决方案都必须满足对精度和深度灵敏度的要求,必须切实可行,具有成本效益,可与金属和塑料导管一起使用且可靠。针对各种条件,研究和评估了用于定位地下管道的创新方法。经过验证的方法包括对当前TW方法的增强,新的声波传输(AT)方法和探地雷达(GPR)方法。优化位置的好处包括:(1)更加便捷的管道定位系统,减少了成本和时间;(2)管道的意外损坏减少了;(3)避免了连接问题和关键通信的丢失;(4)保留光纤网络。提出了确定针对各种条件的最佳解决方案的决策过程,并在本文中进行了介绍。为了使决策方法的最佳应用,使用交叉引用的地理土壤图数据对基础管道和周围环境数据进行了改进,以实现对定位技术的正确选择。

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