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首页> 外文期刊>IEEE transactions on very large scale integration (VLSI) systems >A System Level Energy Model and Energy-Quality Evaluation for Integrated Transceiver Front-Ends
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A System Level Energy Model and Energy-Quality Evaluation for Integrated Transceiver Front-Ends

机译:集成收发器前端的系统级能量模型和能量质量评估

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摘要

As CMOS technology scales down, digital supply voltage and digital power consumption goes down. However, the supply voltage and power consumption of the RF front-end and analog sections do not scale in a similar fashion. In fact, in many state-of-the-art communication transceivers, RF and analog sections can consume more energy compared to the digital part. In this paper, first, a system level energy model for all the components in the RF and analog front-end is presented. Next, the RF and analog front-end energy consumption and communication quality of three representative systems are analyzed: a single user point-to-point wireless data communication system, a multi-user code division multiple access (CDMA)-based system and a receive-only video distribution system. For the single user system, the effect of occupied signal bandwidth, peak-to-average ratio (PAR), symbol rate, constellation size, and pulse-shaping filter roll-off factor is analyzed; for the CDMA-based multi-user system, the effect of the number of users in the cell and multiple access interference (MAI) along with the PAR and filter roll-off factor is studied; for the receive-only system, the effect of 1/f noise for direct-conversion receiver and the effect of IF frequency for low-IF architecture on the RF front-end power consumption is analyzed. For a given communication quality specification, it is shown that the energy consumption of a wireless communication front-end can be scaled down by adjusting parameters such as the pulse shaping filter roll-off factor, constellation size, symbol rate, number of users in the cell, and signal center frequency
机译:随着CMOS技术的发展,数字电源电压和数字功耗下降。但是,RF前端和模拟部分的电源电压和功耗不会以类似的方式缩放。实际上,与数字部分相比,在许多最新的通信收发器中,RF和模拟部分会消耗更多的能量。在本文中,首先,提出了针对RF和模拟前端中所有组件的系统级能量模型。接下来,分析了三种代表性系统的RF和模拟前端能耗以及通信质量:单用户点对点无线数据通信系统,基于多用户码分多址(CDMA)的系统以及仅接收视频分发系统。对于单用户系统,分析了占用信号带宽,峰均比(PAR),符号率,星座图大小和脉冲整形滤波器滚降因子的影响;对于基于CDMA的多用户系统,研究了小区中用户数量和多址干扰(MAI)以及PAR和滤波器滚降因子的影响;对于仅接收系统,分析了1 / f噪声对直接转换接收器的影响以及中频对低中频架构的影响对射频前端功耗的影响。对于给定的通信质量规范,表明可以通过调整参数(例如脉冲整形滤波器的滚降系数,星座图大小,符号率,用户数量)来按比例缩小无线通信前端的能耗。信元和信号中心频率

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