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Design methods for system-on-a-chip control codecs to enhance performance and reuse

机译:片上系统控制编解码器的设计方法,以提高性能和重用性

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While the conventional concept of a signal coder-decoder (codec) is of a homogeneous device, such that the output decoding is simply an inverse of the input decoding, the heterogeneous codec developed in this paper decouples the input and output decoding; this variation generalizes the system. A control codec is an application of a heterogeneous codec, which replaces a traditional discrete analog control loop. This analog control loop includes an A/D (coder) plus a D/A (decoder), as well as other peripheral signal processing algorithms. Our application of the control codec is to improve the control of RF transponders in satellites. The codec is shown to have the ability to be optimized for a specific application as well as to be re-targeted to different fabrication lines. Because of the environmental demands on spaceborne devices several stable radiation-hardened SOI BiCMOS processes were used. The MIT Lincoln Labs AST Fully Depleted SOI deep-submicron process was also used as an example of re-targeting. Further, we develop the design for a control codec as an application of a general class of heterogeneous, process-independent codecs. The concepts for both a heterogeneous codec and a control codec are important additions to mixed-signal system design because they facilitate analog and mixed-signal block reuse. Our methodology implements a deliberate mixed-signal design decomposition, which enhances the reuse. This reuse is a major advancement in the development of evolvable hardware that uses both analog and digital signal processing in SoC applications.
机译:虽然信号编码器 - 解码器(CodeC)的传统概念是均匀的装置,使得输出解码简单地是输入解码的倒数,但本文开发的异构编解码器与输入和输出解码进行了解码;这种变化推广了系统。控制编解码器是异构编解码器的应用,其替换传统的离散模拟控制回路。该模拟控制回路包括A / D(编码器)以及D / A(解码器),以及其他外围信号处理算法。我们对控制编解码器的应用是改善卫星RF转发器的控制。编解码器被示出为具有优化特定应用的能力以及重新瞄准不同的制造线。由于对星载装置对环境所需的几种稳定的辐射硬化的SOI BICMOS工艺。 MIT LICOLN LABS AST完全耗尽的SOI深亚微米过程也用作重新瞄准的示例。此外,我们开发控制编解码器的设计作为一种异构,过程无关编解码器的应用。异构编解码器和控制编解码器的概念是混合信号系统设计的重要补充,因为它们促进了模拟和混合信号块重复使用。我们的方法实现了一个刻意的混合信号设计分解,其增强了重用。此重用是在SOC应用中使用模拟和数字信号处理的不可扩大硬件开发的主要进步。

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