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Low-Power Low-Latency BCH Decoders for Energy-Efficient Optical Interconnects

机译:用于节能光互连的低功耗低延迟BCH解码器

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摘要

Since energy dissipation and latency in optical interconnects are of utmost concern, such links are often operated without forward error correction. We propose a low-complexity noniterative two-error correcting Bose-Chaudhuri-Hocquenghem (BCH) decoder circuit that significantly relaxes the stringent optical modulation amplitude requirements on the transmitter, which help to reduce laser and laser driver energy dissipation. We demonstrate, in a 28-nm CMOS process technology, that the introduction of this BCH circuit in an uncoded link leads to energy-per-bit reductions of 25%, even when the impact of code rate on receiver energy dissipation is considered.
机译:由于光互连中的能量耗散和等待时间是最重要的问题,因此此类链路通常在没有前向纠错的情况下运行。我们提出了一种低复杂度的非迭代式双误差校正Bose-Chaudhuri-Hocquenghem(BCH)解码器电路,该电路显着放松了发射机对光调制幅度的严格要求,这有助于减少激光器和激光器驱动器的能量耗散。我们证明,在28 nm CMOS工艺技术中,即使考虑了编码速率对接收器能量耗散的影响,在未编码链路中引入这种BCH电路也可将每位能量降低25%。

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