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Optimal power and noise allocation for analog and digital sections of a low power radio receiver

机译:低功率无线电接收机的模拟和数字部分的最佳功率和噪声分配

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We determine the optimal allocation of power between the analog and digital sections of an RF receiver, while meeting the BER constraint. Unlike conventional RF receiver designs, we treat the SNR at the output of the analog front end (SNRAD) as a design parameter rather than a specification to arrive at this optimal allocation. We first determine the relationship of the SNRAD to the resolution and operating frequency of the digital section. We then use power models for the analog and digital sections to solve the power minimization problem. As an example, we consider a 802.15.4 compliant low-IF receiver operating at 2.4 GHz in 0.13μm technology with 1.2 V power supply. We find that the overall receiver power is minimized by having the analog front end provide an SNR of 1.3dB and the ADC and the digital section operate at 1-bit resolution with 18MHz sampling frequency while achieving a power dissipation of 7mW.
机译:我们确定RF接收器的模拟和数字部分之间的最佳功率分配,同时满足BER约束。与传统的RF接收器设计不同,我们将模拟前端(SNRAD)输出处的SNR视为设计参数,而不是规范,以达到最佳分配。我们首先确定SNRAD与数字部分的分辨率和工作频率之间的关系。然后,我们将功率模型用于模拟和数字部分,以解决功率最小化问题。例如,我们考虑了采用802.13的低IF接收器,该接收器以0.13μm技术在2.4 GHz频率下工作,电源电压为1.2V。我们发现,通过使模拟前端提供1.3dB的SNR,使总的接收器功率最小化,ADC和数字部分以1位分辨率和18MHz采样频率工作,同时实现7mW的功耗。

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