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Improving the energy performance of GPS receivers for location tracking applications

机译:改善用于位置跟踪应用的GPS接收器的能源性能

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Integrated GPS receivers have become a basic module in location based services, such as position sharing, wild animal monitoring, and location tracking. However, GPS modules have a serious battery drain problem due to their high computation load. This paper aims to reveal the impact of key software parameters on GPS energy consumption, by establishing an energy model for a standard GPS receiver architecture as found in both academic and industrial designs. In particular, our measurements show that the receiver's energy consumption is in large part linear with the number of tracked satellites. This leads to a design of selective tracking algorithm that provides similar positioning accuracy (around 12m) with a subset of selected satellites, which translates to an energy saving of 22.7%.
机译:集成的GPS接收器已成为基于位置的服务(例如位置共享,野生动物监视和位置跟踪)中的基本模块。但是,由于GPS模块计算量大,因此存在严重的电池耗电问题。本文旨在通过建立用于学术和工业设计中的标准GPS接收器架构的能源模型,来揭示关键软件参数对GPS能耗的影响。特别是,我们的测量结果表明,接收机的能耗在很大程度上与被跟踪卫星的数量成线性关系。这导致了选择性跟踪算法的设计,该算法可为选定的卫星子集提供类似的定位精度(约12m),从而可节省22.7%的能源。

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