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Advancing an in-memory computing for a multi-accent real-time voice frequency recognition modeling: a comprehensive study of models & mechanism

机译:推进用于多口径实时语音频率识别建模的内存计算:全面研究模型和机制

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摘要

In this age of pervasive computing, numerous scientific accomplishments, such as artificial intelligence and machine learning [ML], have conveyed exciting uprisings to human civilization, which highlights the prospect to shape superior tools and solutions to aid to discourse some of the world's utmost persistent challenges. Coding of English-dialectal dialogue recognition that has numerous datasets turn into a worthy preparatory point. Due to the nature of established records, there is an enormous sum of auditory features that can instantaneously distress the communication signals. These aspects comprise orator transformations, channel spins, contextual and reverberant noise, etc. In the initial step of communication anticipation, input dialog frequencies are administered by a front-end to offer a torrent of audio feature trajectories or interpretations. In projected scheme, the mined reflection classification is served into a decoder to distinguish the furthermost probable term disarray. The aural model signifies the auditory understanding of function by which a reflection categorization can be plotted to a system of sub-word divisions. This study has engrossed on revision and adaptive preparation of auditory models.
机译:在这个普遍的计算时代,众多科学成就,如人工智能和机器学习[ml],已经向人类文明传达了令人兴奋的上行,这突出了塑造优越的工具和解决方案来讨论世界上一些最大的持久性的前景挑战。编码英语 - 方言对话识别,有许多数据集转变为一个有价值的准备点。由于既定记录的性质,存在巨大的听觉特征,可以瞬间遇到通信信号。这些方面包括演奏器转换,通道旋转,语境和混响噪声等。在通信预期的初始步骤中,输入对话频率由前端管理,以提供音频特征轨迹或解释的洪流。在预测方案中,挖掘反射分类被送入解码器以区分此外可能的术语混乱。听觉模型表示可以绘制反射分类的功能的听觉理解,可以绘制到子字分割系统。本研究引发了对听觉模型的修订和自适应准备。

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