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Unified turbo/LDPC code decoder architecture for deep-space communications

机译:统一的turbo / LDPC代码解码器体系结构,用于深空通信

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摘要

Deep-space communications are characterized by extremely critical conditions; current standards foresee the usage of both turbo and low-density-parity-check (LDPC) codes to ensure recovery from received errors, but each of them displays consistent drawbacks. Code concatenation is widely used in all kinds of communication to boost the error correction capabilities of single codes; serial concatenation of turbo and LDPC codes has been recently proven effective enough for deep space communications, being able to overcome the shortcomings of both code types. This work extends the performance analysis of this scheme and proposes a novel hardware decoder architecture for concatenated turbo and LDPC codes based on the same decoding algorithm. This choice leads to a high degree of datapath and memory sharing; postlayout implementation results obtained with complementary metal-oxide semiconductor (CMOS) 90 nm technology show small area occupation (0.98 mm) and very low power consumption (2.1 mW).
机译:深空通信的特点是极端危险。当前的标准预见了Turbo和低密度奇偶校验(LDPC)代码的使用,以确保从接收到的错误中恢复,但是它们每个都显示出一致的缺陷。代码级联被广泛用于各种通信中,以增强单个代码的纠错能力。 Turbo和LDPC码的串行级联最近已被证明对于深空通信足够有效,能够克服两种编码类型的缺点。这项工作扩展了该方案的性能分析,并提出了一种基于相同解码算法的级联Turbo和LDPC码的新型硬件解码器架构。这种选择导致高度的数据路径和内存共享。使用互补金属氧化物半导体(CMOS)90 nm技术获得的布局后实施结果显示,其占地面积小(0.98 mm),功耗极低(2.1 mW)。

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