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Methods for improving computational efficiency in a global positioning satellite receiver

机译:在全球定位卫星接收机中提高计算效率的方法

摘要

A method reduces consumption of computational resources in a satellite signal receiver. The method includes segmenting a sample of a received global positioning base band vector, segmenting a sample of a replica code/acquisition signal into segments corresponding in length to the segments of the base band vector, circularly correlating segments of the base band vector to zero padded segments of the code/acquisition signal to form a time domain correlation vector, inserting a portion of the time domain correlation vector in a matrix, continuing to correlate circularly the segments of the received signal sample with zero padded segments of the code signal sample until all of the segments in received signal sample have been circularly correlated, dividing rows in the matrix into blocks that are equal to a smallest increment corresponding to a bit edge, sorting the blocks from the divided rows into zero padded blocks, transforming the zero padded blocks into frequency domain columns, summing the frequency domain columns in different combinations to form a plurality of coherent integration matrices for testing possible bit edge locations and bit values.
机译:一种方法减少了卫星信号接收机中计算资源的消耗。该方法包括:分割接收到的全球定位基带矢量的样本;将复制码/获取信号的样本分割成长度与基带矢量的各段相对应的段;将基带矢量的各段循环相关到零填充。代码/获取信号的各段以形成时域相关矢量,将时域相关矢量的一部分插入矩阵中,继续将接收信号样本的各段与代码信号样本的零填充段进行循环相关,直到所有已将接收信号样本中的段中的所有段进行循环关联,将矩阵中的行划分为与对应于位边缘的最小增量相等的块,将划分后的行中的块分类为零填充块,将零填充块转换为频域列,将不同组合的频域列求和以形成多个相干t积分矩阵,用于测试可能的位沿位置和位值。

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