标题: | 四元调变与三元调变方案在D类音频放大器之分析 Analysis of Quaternary / Ternary Modulation Scheme for Class-D Audio Amplifier |
作者: | 陈彦均 Chen, Yen-Chun 陈科宏 Chen, Ke-Horng 电机学院电机与控制学程 |
关键字: | 四元调变;三元调变;Quaternary;Ternary |
公开日期: | 2014 |
摘要: | 随着音频产品应用于生活周遭,在音频产品的体积越来越小下,消耗功率越来越大又相对于音频产品的温度不能过高的情形上,提出D 类音频放大器来改善。 D 类音频放大器上较传统AB类的音频放大器具有更高效能及更高功率的优势, 而本论文提出D 类音频放大器分别二种调变方法:四元调变方法与三元调变的分析,比较二种调变方法,可以清楚何种调变方法失真较低, 何种调变方法效率更好,更能节省功率消耗。但在D 类音频放大器三元调变的作法会直接影响输出低瓦数谐波失真的严重性。 在一个D类音频放大器常见到输出级加电感及电容的二阶虑波器,IC外部的原件成本的问题,系统厂商须降低成本,大多变换电感的感值变小及规格变差的情形,将会容易造成D 类音频放大器过电流保护功能下启动,造成声音的中断或是开机瞬间的误动作,这是使用者无法接受的问题,本论文也提出如何避免且有效改善此问题。 此论文模拟结果,在负载8ohm下输出最大功耗43瓦数,效率能达94%。 In recent years, wildly used audio applications in various fields, such as portable cellular phones, tablets or TVs, currently demand small chip size with extremely high power output and relative low temperature dependence during its operation. This thesis not only proposes a Class-D Amplifier to fulfill high-power demand but also maintain good efficiency without increasing operation temperature. Compared to Class-AB amplifier, Class-D amplifier has advantages of high efficiency and high power output. In this thesis, we analyze and compare two modulation techniques, ternary modulation and quaternary modulation. From the comparison, we could clearly understand which modulation can achieve low harmonic distortion, offer efficiency, and save much energy loss. Ternary modulation will directly degrade THD performance when Class-D amplifier operates in low power condition. In commercial applications, Class-D amplifier always come with 2nd order filter design which is composed of inductor, capacitor, and resistor load. Audio system design house always decreases their BOM cost to maintain good profit. Recently, inductor’s value is often to be lower to save more cost. However, the change will causes unacceptable performance. In the worst scenario, occurrence of false alarm may interrupt music play or lead to start-up failure due to over-current protection. These issues cannot be acceptable for the customers. Design house will suffer from return loss. In this thesis, efficient and effective method to avoid inrush current is proposed. The design referred in this thesis is fully verified by Hspice simulations. Proposed technique can offer 94% efficiency and generated 43W output power at 8ohm loading condition. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT070060620 http://hdl.handle.net/11536/76520 |
显示于类别: | Thesis |