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A VLSI implementation method of a compressor for audio systems

机译:音频系统压缩器的VLSI实现方法

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References(14) In this paper, we present a VLSI implementation method on a dynamic range controller, audio level compressor, which is used to make sound effects as an important functional part in a digital audio system on a chip. To implement the gain calculation in a digital dynamic range controller, a power calculation with fractional numbers is required and it is difficult to be performed directly in a digital audio system. We introduce a polynomial expression to approximate the power operation, then the gain calculation is easily performed with a number of additions, multiplications and a division. Based on the gain calculation method of the gain, an efficient VLSI architecture with some arithmetic circuits is proposed. We designed the circuit of a 16-bit audio level compressor by using a hardware description language, VHDL. As a result of the compact circuit design, the 16-bit compressor has only 5,688 gates by 1 μm CMOS gate array technology. The design and simulation results show that the presented audio level compressor has high performance and can be integrated into an audio system on a chip for practical use.
机译:参考文献(14)本文介绍了一种在动态范围控制器音频电平压缩器上的VLSI实现方法,该方法用于使声音效果成为芯片上数字音频系统中的重要功能部件。为了在数字动态范围控制器中实现增益计算,需要用分数进行功率计算,并且很难直接在数字音频系统中执行。我们引入一个多项式表达式来近似幂运算,然后使用许多加法,乘法和除法即可轻松执行增益计算。基于增益的增益计算方法,提出了一种高效的带有一些运算电路的VLSI架构。我们使用硬件描述语言VHDL设计了16位音频电平压缩器的电路。通过紧凑的电路设计,采用1μmCMOS门阵列技术的16位压缩器仅具有5688个门。设计和仿真结果表明,所提出的音频电平压缩器具有高性能,可以集成到芯片上的音频系统中以供实际使用。

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