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Optimal quantization employing programmable flash analog to digital converters

机译:采用可编程闪存模数转换器的最佳量化

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In this paper, a novel implementation of optimal scalar quantizers using a programmable floating-gate flash analog to digital converter (ADC) is described. The optimal quantization levels for a given signal class are determined according to the Lloyd-Max algorithm. The optimal quantization decision levels are then programmed as the reference voltages for comparators in the floating-gate flash ADC. A test-bench involving the programmable flash ADC and an FPGA interface to a PC is designed. The proposed setup is tested for several signal classes including speech signals and Gaussian random signals. It is demonstrated that significant ADC performance gain, quantified in terms of the signal to noise ratio, may be obtained when optimal scalar quantization is implemented on the floating-gate flash ADC.
机译:在本文中,描述了使用可编程浮栅闪光模拟到数字转换器(ADC)的最佳标量化器的新颖实现。根据LLOYD-MAX算法确定给定信号类的最佳量化级别。然后将最佳量化判定级别被编程为浮栅闪光ADC中的比较器的参考电压。设计了涉及可编程闪存ADC和PC的FPGA接口的测试台。建议的设置测试了几种信号类,包括语音信号和高斯随机信号。据证明,当在浮动门闪光ADC上实现最佳标量量化时,可以获得在信号到噪声比的显着的ADC性能增益。

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