Decimation Chain Modeling for Dual-Band Radio Receiver and Its Operation for Continuous Packet Connectivity

C. Park, Sungkyung Park
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Abstract

A decimation chain for multi-standard reconfigurable radios is presented for 900-MHz and 1,900-MHz dual-band cellular standards with a data interpolator based on the Lagrange method for adjusting the variable data rate to a fixed data rate appropriate for each standard. The two proposed configurations are analyzed and compared to provide insight into aliasing and the signal bandwidth by means of a newly introduced measure called interpolation error. The average interpolation error is reduced as the ratio of the sampling frequency to the signal BW is increased. The decimation chain and the multi-rate analogto-digital converter are simulated to compute the interpolation error and the output signal-to-noise ratio. Further, a method to operate the above-mentioned chain under a compressed mode of operation is proposed in order to guarantee continuous packet connectivity for inter-radio-access technologies. The presented decimation chain can be applied to LTE, WCDMA, GSM multi-mode multi-band digital front-end which will ultimately lead to the software-defined radio.
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双频无线电接收机抽取链建模及其连续分组连接操作
针对900-MHz和1900 - mhz双频蜂窝标准,提出了一种多标准可重构无线电的抽取链,并采用基于拉格朗日方法的数据插补器,将可变数据速率调整为适合每个标准的固定数据速率。分析和比较了这两种建议的配置,以提供对混叠和信号带宽的洞察,通过一种新引入的测量称为插值误差。随着采样频率与信号BW之比的增大,平均插值误差减小。对抽取链和多速率模数转换器进行了仿真,计算了插值误差和输出信噪比。此外,为了保证无线接入技术的连续分组连接,提出了在压缩操作模式下操作上述链的方法。所提出的抽取链可应用于LTE、WCDMA、GSM多模多频带数字前端,最终实现软件定义无线电。
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