Simulation of DPCM and ADM Systems

Christopher Mansour, Roger Achkar, Gaby Abou Haidar
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引用次数: 6

Abstract

Through years, Digital Communication systems, Pulse Coded Modulation (PCM), Linear Delta Modulation (LDM), Differential Pulse Coded Modulation (DPCM), and Adaptive Delta Modulation (ADM), have proven their unlimited advantages over analog communication systems, in term of error minimization, and distances of transmission enhancement. However two of these systems, the Pulse Coded Modulation and Linear Delta Modulation, still have some weaknesses limiting their advantages, these limitations negatively affect the communication process causing quantization error, slope overload distortion and granular noise. On the other hand, communication engineers have developed two additional digital communication systems which are the Adaptive Delta Modulation (ADM) and the Differential Pulse Coded Modulation (DPCM) in order to solve the aforementioned problems. This paper discusses the implementation and simulation of the aforementioned digital communication systems using Simulink (The Math Works, Inc., Natick, MA, USA) showing the effect of different types of noise when applied to the channel, thus, proving the importance of DPCM and ADM systems in eliminating such effects and ensuring a successful transfer of data.
DPCM和ADM系统仿真
多年来,数字通信系统,脉冲编码调制(PCM)、线性增量调制(LDM)、差分脉冲编码调制(DPCM)和自适应增量调制(ADM)已经证明了它们在误差最小化和传输距离增强方面比模拟通信系统具有无限的优势。但是其中两种系统,脉冲编码调制和线性增量调制仍然存在一些缺点,限制了它们的优势,这些缺点对通信过程产生了负面影响,导致量化误差,斜率过载失真和颗粒噪声。另一方面,为了解决上述问题,通信工程师开发了两种额外的数字通信系统,即自适应增量调制(ADM)和差分脉冲编码调制(DPCM)。本文讨论了使用Simulink (the Math Works, Inc., Natick, MA, USA)实现和模拟上述数字通信系统,显示了应用于信道时不同类型噪声的影响,从而证明了DPCM和ADM系统在消除此类影响和确保成功传输数据方面的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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