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Effect of chip rate on the ranging accuracy in a regenerative pseudo-noise ranging system

机译:芯片速率对再生伪噪声测距系统中测距精度的影响

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The ranging accuracy of a pseudo-noise ranging system is mainly decided by range jitter and time delay discrimination. Many factors can affect the ranging accuracy, one of which is the chip rate. In digital signal processing, the time delay discrimination and autocorrelation function of sampled ranging sequences of different chip rates are very different. An approximation simulation model is established according to an in-phase quadrature (I/Q) correlator which is used to evaluate the time delay. Simulation results of the range jitter and time delay discrimination show that the chip rate which provides a non-integer sample-to-chip rate ratio can achieve a higher ranging accuracy, and some test results validate the simulation model. In some design missions, the simulation results may help to select an optimum sample-to-chip rate ratio to satisfy the design requirement on the ranging accuracy.
机译:伪噪声测距系统的测距精度主要取决于距离抖动和时延判别。许多因素会影响测距精度,其中之一就是码片速率。在数字信号处理中,不同码片速率的采样测距序列的时延判别和自相关函数非常不同。根据同相正交(I / Q)相关器建立了一个近似仿真模型,该模型用于评估时间延迟。范围抖动和时延识别的仿真结果表明,提供非整数采样率的码片速率可以实现更高的测距精度,并且一些测试结果验证了该仿真模型。在某些设计任务中,仿真结果可能有助于选择最佳的样品与芯片的比率,以满足对测距精度的设计要求。

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