功率高效的模拟到数字转换,用于锂离子电池电压监测和测量

S. Qaisar, D. Dallet, S. Benjamin, P. Desprez, R. Yahiaoui
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引用次数: 18

摘要

在现代时代,电池供电系统的利用率呈指数级增长。为了达到最佳的系统性能,使用BMS(电池管理系统)是不可避免的。近年来bms领域的发展对处理资源的要求越来越高。降低BMS的功耗正成为最困难的工业挑战之一。为了实现这一目标,大多数研究都集中在改进嵌入式系统的设计上,而很少有研究针对输入信号的时变特性进行开发。这项工作旨在通过巧妙地使系统活动适应输入信号的局部变化来实现功率效率。在此背景下,提出了一种新的a /D转换方法。提出的解决方案,基于LCSS(水平交叉采样方案)提出了一个ADC (A/D转换器),能够根据输入信号的变化调整其采集速率。实际上,其原理是巧妙地利用信号的局部特征,以相关的采样率只获取相关的信号部分。与传统方法相比,该方法显著减少了采集的样本数量,因此有望大幅降低系统功耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Power efficient analog to digital conversion for the Li-ion battery voltage monitoring and measurement
In modern era the utilization of battery empowered systems is growing exponentially. In the goal to achieve an optimal system performance, the employment of a BMS (Battery Management System) is inevitable. The recent sophistications in the area of BMSs are demanding more and more processing resources. Reducing the BMS power consumption is becoming one of the most difficult industrial challenges. Most of efforts to achieve this goal are focused on improving the embedded systems design, but very few studies target to exploit the input signal time-varying nature. This work aims to achieve power efficiency by smartly adapting the system activity to the input signal local variations. In this context a novel A/D conversion approach is derived. The proposed solution, based on the LCSS (Level Crossing Sampling Scheme) presents an ADC (A/D Converter), able to adapt its acquisition rate according to the input signal variations. In fact, the principle is to smartly exploit the signal local characteristics to acquire only the relevant signal parts at relevant sampling rate. The idea offers a significant reduction in acquired number of samples and hence promises a drastic reduction in the system power consumption compared to the classical approach.
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