首页> 外文会议>IEEE International Symposium on Information Theory >Capacity Bounds for Communication Systems with Quantization and Spectral Constraints
【24h】

Capacity Bounds for Communication Systems with Quantization and Spectral Constraints

机译:具有量化和频谱约束的通信系统的容量限制

获取原文

摘要

Low-resolution digital-to-analog and analog-to-digital converters (DACs and ADCs) have attracted considerable attention in efforts to reduce power consumption in millimeter wave (mmWave) and massive MIMO systems. This paper presents an information-theoretic analysis with capacity bounds for classes of linear transceivers with quantization. The transmitter modulates symbols via a unitary transform followed by a DAC and the receiver employs an ADC followed by the inverse unitary transform. If the unitary transform is set to an FFT matrix, the model naturally captures filtering and spectral constraints which are essential to model in any practical transceiver. In particular, this model allows studying the impact of quantization on out-of-band emission constraints. In the limit of a large random unitary transform, it is shown that the effect of quantization can be precisely described via an additive Gaussian noise model. This model in turn leads to simple and intuitive expressions for the power spectrum of the transmitted signal and a lower bound to the capacity with quantization. Comparison with non-quantized capacity and a capacity upper bound that does not make linearity assumptions suggests that while low resolution quantization has minimal impact on the achievable rate at typical parameters in 5G systems today, satisfying out-of-band emissions are potentially much more of a challenge.
机译:低分辨率的数字 - 模拟和模数转换器(DACS和ADC)在努力中引起了可观的关注,以降低毫米波(MMWAVE)和大规模的MIMO系统中的功耗。本文介绍了具有量化的线性收发器类容量界限的信息 - 理论分析。发射机通过单一变换调制符号,然后是DAC,接收器采用ADC,然后是逆酉变换。如果单一变换设置为FFT矩阵,则该模型自然地捕获过滤和光谱约束,这对任何实际收发器中的模型至关重要。特别是,该模型允许研究量化对带外排放约束的影响。在大型随机整体变换的极限中,示出了通过添加剂高斯噪声模型可以精确描述量化的效果。该模型又导致发射信号的功率谱和具有量化的容量的低绑定的简单和直观的表达式。与非量化容量的比较和不制定线性假设的容量上限表明,虽然低分辨率量化对今天的5G系统中可实现的速率的影响最小,但满足带外排放可能更多一个挑战。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号