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MEMS acoustic array embedded in an FPGA based data acquisition and signal processing system

机译:嵌入基于FPGA的数据采集和信号处理系统中的MEMS声学阵列

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Acoustic arrays are currently utilized in many different applications, ranging from consumer electronics to military systems. Active research on sensors, hardware, algorithms, and system integration specific to acoustic arrays are ongoing on a wide range of engineering fields. Applications such as sound source separation, sound navigation, sound imaging, and speech recognition are few of the many possible applications that benefit acoustic sensor array. Using multiple sensors in arrays has many advantages; however it is also more challenging. As the number of signals increases, the complexity of the electronics to acquire and process the data will grow as well. Such challenge can be quite formidable depending on the number of sensors, processing speed, and complexity of the target application. This paper describes the design and implementation of a 52 microphone MEMS array, embedded in an FPGA platform with real-time processing capabilities. The paper also provides the first results on the use of acoustic array as a source separation system utilizing Independent Component Analysis (ICA) technique.
机译:当前,声学阵列被用于许多不同的应用中,从消费电子产品到军事系统。针对声学阵列的传感器,硬件,算法和系统集成的积极研究正在广泛的工程领域中进行。诸如声源分离,声音导航,声音成像和语音识别之类的应用程序是使声学传感器阵列受益的众多可能应用程序中的少数。在阵列中使用多个传感器有很多优点;但是这也更具挑战性。随着信号数量的增加,获取和处理数据的电子设备的复杂性也将增加。根据传感器的数量,处理速度和目标应用程序的复杂性,这样的挑战可能非常艰巨。本文介绍了52麦克风MEMS阵列的设计和实现,该阵列嵌入具有实时处理能力的FPGA平台中。本文还提供了利用声学阵列作为利用独立成分分析(ICA)技术的声源分离系统的第一个结果。

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