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A FPGA-Based Approach to the Digital Control of a Class-D Amplifier for Sound Applications

机译:基于FPGA的分子应用程序数字控制的方法

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The continuing trend in audio amplifier technology istowards more compact systems, lower distortion levels, and greater power efficiency. Thus, the relatively new consensus in the audio industry is the Class-D amplifier, which generally uses compact h-bridge power inverters and a highly power-efficient, high frequency PWM switching scheme which yields little distortion after filtering. This paper presents an on-going research effort with the Class-D amplifier that focuses on keeping the audio signal chain in the digital domain until just before the output filter stage that drives the speaker, which prevents transmission noise from distorting the audio signal and also provides the opportunity for a digital closed-loop control system for generating switching commands. Different solutions for the control system are theoretically and experimentally compared. The hardware structure is composed of a host computer, a board featuring a DSP chip coupled with a FPGA, a silicon H-bridge power inverter, a signal conditioning stage, and an ultra fast ADC.
机译:音频放大器技术的持续趋势是更紧凑的系统,较低的失真水平和更大的功率效率。因此,音频行业的相对较新的共识是D类放大器,它通常使用紧凑的H桥电源逆变器和高功率高,高频PWM切换方案,其在过滤后产生很小的失真。本文介绍了对D类放大器进行了持续的研究,专注于将音频信号链保持在数字域中,直到驱动扬声器的输出滤波器级之前,这防止了传输噪声扭曲了音频信号,也是如此提供用于生成切换命令的数字闭环控制系统的机会。对控制系统的不同解决方案理论上和实验比较。硬件结构由主计算机组成,该电路板具有与FPGA耦合的DSP芯片,硅H桥电源逆变器,信号调节级和超快速ADC。

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