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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Receiver Performances Considering Effects of Gain Control and Quantization in FDM-Based Narrowband Communication Systems
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Receiver Performances Considering Effects of Gain Control and Quantization in FDM-Based Narrowband Communication Systems

机译:在基于FDM的窄带通信系统中考虑增益控制和量化影响的接收机性能

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In wireless receivers, in order to prevent the saturation of a received signal in an analog-to-digital converter (ADC), an automatic gain control (AGC), which maintains the amplitude of an analog signal at an appropriate fixed level, is frequently employed. This paper discusses the effects of gain control and quantization in the AGC and ADC on the receiver performance in frequency division multiplexing-based narrowband communication systems. Each communication channel is very narrow in these systems, so the channels are packed without breaks, making it difficult to extract the desired signal using an analog bandpass filter. Therefore, other multiple communication signals are in-band interference signals in these systems. In comparison with a single interference signal, a peak amplitude of multiple interference signals is greater than the that of single interference signal given the same interference power. It is well known that signals having a large peak value cause the degradation of bit resolution due to the AGC and ADC processes. The purpose of this paper is to provide a theoretical and numerical analysis of the effects of gain control and quantization on the receiver performance in such an environment. The analysis results indicated that (i) in-band interference signals decreased the bit resolution of the desired signal amplitude because of these processes and (ii) the effects of these processes depend on the amplitude intensity and the number of in-band interference signals, given the same interference power.
机译:在无线接收器中,为了防止接收信号在模数转换器(ADC)中饱和,经常将自动增益控制(AGC)保持在适当的固定水平上,以保持模拟信号的幅度受雇。本文讨论了基于频分复用的窄带通信系统中AGC和ADC中增益控制和量化对接收机性能的影响。在这些系统中,每个通信通道都非常狭窄,因此,通道不间断地打包在一起,因此很难使用模拟带通滤波器提取所需的信号。因此,在这些系统中,其他多个通信信号是带内干扰信号。与单个干扰信号相比,在相同干扰功率下,多个干扰信号的峰值幅度要大于单个干扰信号的峰值幅度。众所周知,由于AGC和ADC处理,具有大峰值的信号引起位分辨率的下降。本文的目的是对这种环境下增益控制和量化对接收机性能的影响进行理论和数值分析。分析结果表明,由于这些过程,(i)带内干扰信号降低了所需信号幅度的比特分辨率,并且(ii)这些过程的效果取决于幅度强度和带内干扰信号的数量,给定相同的干扰功率。

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