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首页> 外文期刊>Analog Integrated Circuits and Signal Processing >A Rank Encoder: Adaptive Analog to Digital Conversion Exploiting Time Domain Spike Signal Processing
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A Rank Encoder: Adaptive Analog to Digital Conversion Exploiting Time Domain Spike Signal Processing

机译:等级编码器:利用时域尖峰信号处理的自适应模数转换

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摘要

An electronic circuit is presented that encodes an array of analog input signals into a digital number. The digital output is a 'rank order code' that reflects the relative strength of the inputs, but is independent of the absolute input intensities. In that sense, the circuit performs an adaptive analog to digital conversion, adapting to the average intensity of the inputs (i.e. effectively normalizing) and adapting the quantization levels to the spread of the inputs. Thus, it can convey essential information with a minimal amount of output bits over a huge range of input signals. As a first processing step the analog inputs are projected into the time domain, i.e. into voltage spikes. The latency of those spikes encodes the strength of the input. This conversion enables the circuit to conduct further analog processing steps by asynchronous logic. The circuit was implemented as a prototype on a VLSI chip, fabricated in the AMS 0.6μm process. The implementation takes 31 analog inputs that are delivered as frequency encoded spike trains by a 5 bit AER (address event representation) bus. The output is 128 bits wide and is read serially in 16-bit packages. Based on tests with one particular set of inputs with an entropy of 112.62 bits, it is estimated that the chip is able to convey 40.81 bits of information about that input set. Possible applications can be found in speech recognition and image processing.
机译:提出了一种将模拟输入信号阵列编码为数字的电子电路。数字输出是一个“等级代码”,它反映输入的相对强度,但与绝对输入强度无关。从这个意义上讲,电路执行自适应模数转换,以适应输入的平均强度(即有效地归一化),并使量化电平适应输入的扩展。因此,它可以在很大范围的输入信号上以最少的输出位传达基本信息。作为第一步处理,模拟输入被投影到时域中,即投影到电压尖峰中。这些尖峰的潜伏期编码了输入的强度。这种转换使电路能够通过异步逻辑进行进一步的模拟处理步骤。该电路被实现为VLSI芯片上的原型,该芯片采用AMS0.6μm工艺制造。该实现采用31个模拟输入,这些模拟输入由5位AER(地址事件表示)总线作为频率编码的尖峰序列发送。输出为128位宽,并以16位封装顺序读取。基于对一组具有112.62位熵的特定输入的测试,估计该芯片能够传达有关该输入组的40.81位信息。可能的应用可以在语音识别和图像处理中找到。

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