A Σ Δ fractional-N closed-loop modulator for DECT

D. Hermansen, E. Buskgaard, P. Olesen, F. Andreasen, T. Larsen
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引用次数: 1

Abstract

Traditionally, modulators for DECT are implemented using open-loop modulation. However: open-loop modulators are too slow for 100% slot utilization. This causes the well known DECT blind-slot problem. One solution to this is to employ closed-loop modulation in stead. This paper presents a closed-loop modulator solution for DECI: The modulator b based on a combination of ΣΔ-techniques and use of a fractional-N PLL. The technique allows for digital phase and frequency modulation without use of mixers or D/A converters in the modulation path. Simulation results show a working modulator that is superior to state-of-the-art DECT transmitters using open-loop modulation. An internal reference frequency of 10 - 30 MHz gives an output PSD that meets DECT speci cation requirements on unwanted emissions due to modulation. The RMS phase error for a reference frequency of 31.104 MHz is as low as 1.06° and the peak phase error is 2.90°. The blind-slot problem is solved using the closed-loop modulator as the lock time is 1 - μs which, compared to the guard space requirements of below 50 μ, gives a large room for implementation imperfections.
用于DECT的Σ Δ分数n闭环调制器
传统上,DECT调制器使用开环调制实现。然而,开环调制器对于100%的插槽利用率太慢了。这就导致了众所周知的DECT盲槽问题。一个解决方案是采用闭环调制代替。本文提出了一种用于DECI的闭环调制器解决方案:基于ΣΔ-techniques和分数n锁相环的组合调制器b。该技术允许在调制路径中不使用混频器或D/A转换器的情况下进行数字相位和频率调制。仿真结果表明,该调制器的工作性能优于采用开环调制的最先进的DECT发射机。10 - 30 MHz的内部参考频率使输出PSD满足DECT规范对由于调制而产生的不必要发射的要求。参考频率为31.104 MHz时,相位误差的均方根值低至1.06°,峰值相位误差为2.90°。采用闭环调制器解决了盲隙问题,锁锁时间为1 μs,相对于保护空间小于50 μs的要求,有较大的实现缺陷空间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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