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Joint localization and transmit-ambiguity resolution for ultra-low energy wireless sensors

机译:用于超低能量无线传感器的联合定位和传输 - 模糊分辨率

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Technological advances in the miniaturization of millimeter-sized sensor motes facilitate new application cases where the motes' inherent energy constraints enforce radical changes with respect to the sensors' communication procedures. An upcoming application scenario is the surveying and exploration of hardly permeable and hardly accessible underground environments such as those of oil-sand mining areas. This scenario requires ten-thousands of millimeter-sized sensor motes (outer diameter less than 5mm) to examine the resource wealth. Within this scope, a correspondingly large amount of extremely resource constrained sensors motes need to have the possibility to sense their environment and interact with each other. In order to enable such application cases, significant energy savings are necessary. An interesting and promising approach is to shorten the sensors' DS-CDMA code sequences and, thereby, reduce the communication related energy costs. In this work, we investigate the resulting downsides of this approach on the range-based localization. As the code shortening leads to the problem of nonunique transmitter identification and consequently non-relatable pairwise distance measurements, the localization of the sensors by typical means is prevented in the first place. This is because multiple sensor motes will concurrently use the same transmit-codes. In this regard, we propose an approach which enables the joint localization and ambiguity resolution and reduces the complexity compared to sequential approaches where at fist the transmit-ambiguities are resolved and a localization with typical methods is performed subsequently.
机译:毫米大小传感器仪的小型化的技术进步促进了新的应用案例,其中电机的固有能量约束实施了关于传感器的通信程序的根本改变。即将举行的申请方案是对诸如油砂采矿区之类的难以渗透和难以访问的地下环境的测量和探索。这种情况需要万毫米尺寸的传感器仪(外径小于5mm)来检查资源财富。在此范围内,相应大量的极其资源受限的传感器电影需要有可能感知其环境并彼此交互。为了实现这种应用程序,可以节省显着的节能。有趣和有希望的方法是缩短传感器的DS-CDMA码序列,从而降低了通信相关的能源成本。在这项工作中,我们调查了基于范围的定位的这种方法的所产生的落下。随着代码缩短导致非唯一发射机识别的问题,并且因此不可复制的成对距离测量,首先阻止传感器通过典型装置的定位。这是因为多个传感器电机将同时使用相同的发射代码。在这方面,我们提出了一种方法,该方法能够实现联合定位和模糊的分辨率,并与拳头在拳头的顺序方法被解析的顺序方法和随后进行典型方法的定位来降低复杂性。

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