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Quantization noise consideration and characterization in Sigma-Delta MEMS accelerometer

机译:Sigma-Delta MEMS加速度计中的量化噪声注意事项和特性

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In order to predict the noise performance of a digital capacitive MEMS accelerometer and optimize the parameters of circuits, an improved quantization noise model is presented in this paper. Considering the distortion produced by the nonlinear characteristic of a quantizer, a system model of the Sigma-Delta (Sigma Delta) accelerometer is established on the basis of describing function method model of a 1-bit quantizer. On the basis of this model, the formula of quantization noise before noise shaping, the transfer function of quantization noise and its expression in the signal band are presented. The model of quantization noise proposed in this paper includes the influence of sensing element parameters and the high non linearity of a 1-bit quantizer. DC and AC simulation results show that the model can forecast the quantization noise in the signal band more accurately, compared with the models based on linear and quasi-linear model of a quantizer. The influences of electronic noise and sampling frequency on quantization noise are also analyzed. The results show that in Sigma Delta MEMS accelerometer, electronic noise will lead to a reduction of the quantization gain and impact the noise shaping ability seriously. Increasing sampling frequency cannot effectively reduce the output quantization noise, but it will decline with sampling frequency at the slope of 3 dB/oct. (C) 2015 Elsevier Ltd. All rights reserved.
机译:为了预测数字电容式MEMS加速度计的噪声性能并优化电路参数,提出了一种改进的量化噪声模型。考虑到量化器非线性特性产生的失真,在描述1位量化器功能方法模型的基础上,建立了Sigma-Delta(Sigma Delta)加速度计的系统模型。在此模型的基础上,给出了噪声整形前的量化噪声公式,量化噪声的传递函数及其在信号频带中的表达式。本文提出的量化噪声模型包括感测元件参数的影响和1位量化器的高非线性度。直流和交流仿真结果表明,与基于量化器的线性和准线性模型的模型相比,该模型可以更准确地预测信号频带中的量化噪声。还分析了电子噪声和采样频率对量化噪声的影响。结果表明,在Sigma Delta MEMS加速度计中,电子噪声将导致量化增益的降低并严重影响噪声整形能力。增加采样频率不能有效地降低输出量化噪声,但是随着采样频率以3 dB / oct的斜率下降。 (C)2015 Elsevier Ltd.保留所有权利。

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