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Improving the Performance of the Carrier Tracking Loop for GPS Receivers in Presence of Transient Errors due to PVT Variations

机译:在存在PVT变化引起的瞬时误差的情况下,改善GPS接收机的载波跟踪环路的性能

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The increase in integration density and the require-ment of low power supplies to reduce energy consumption canmake circuits more and more sensitive to upsets errors. Theloss of robustness increases with process/voltage and temperature(PVT) variations. This paper shows that the impact of errorsthat appear when computing the estimation of the Doppleroffsets in a GPS application can be greatly reduced by tuningappropriately the carrier filter bandwidth. The effectiveness ofthe proposed was proven by comparing the performance a faultyGPS receiver to a non-faulty (noisy-free) GPS receiver at twolevels: the standard deviation of the tracking error variance(by theory and by simulation) as well as the standard deviationbetween positions given by the faulty (noisy) and non-faulty (thenoiseless) GPS receivers. Modifying properly the optimal filterbandwidth values gives astonishing results in terms of robustnessagainst errors. The modification of the bandwidth filter valuesintroduces almost no position degradation in a noise-free GPSreceiver (only11cm in average). With 40 % of error, the standarddeviation of the error in the position does not exceed 2 m byincreasing the PLL bandwidth while the tracking loop does notsupport more than 6% of errors.
机译:集成密度的提高以及对降低功耗的低功耗要求,可能会使电路对失调误差越来越敏感。鲁棒性的损失随着过程/电压和温度(PVT)的变化而增加。本文表明,通过适当地调整载波滤波器带宽,可以大大减少在GPS应用中计算多普勒偏移估计时出现的误差的影响。通过比较有故障的GPS接收机与无故障(无噪声)的GPS接收机在两个级别上的性能,证明了该方法的有效性:跟踪误差方差的标准偏差(通过理论和仿真)以及位置之间的标准偏差由有故障(嘈杂)和无故障(无噪声)的GPS接收器给出。适当地修改最佳滤波器带宽值就鲁棒性而言可带来惊人的结果。带宽滤波器值的修改几乎不会在无噪声的GPS接收器(平均只有11厘米)中引起位置降低。误差为40%时,通过增加PLL带宽,位置误差的标准偏差不会超过2 m,而跟踪环路所支持的误差不会超过6%。

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