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Binary Subblock Energy-Constrained Codes: Knuth’s Balancing and Sequence Replacement Techniques

机译:二进制子块能量受限代码:Knuth的平衡和序列替换技术

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The subblock energy-constrained codes (SECCs) have recently attracted attention due to various applications in communication systems such as simultaneous energy and information transfer. In a SECC, each codeword is divided into smaller subblocks, and every subblock is constrained to carry sufficient energy. In this work, we study SECCs under more general constraints, namely bounded SECCs and sliding-window constrained codes (SWCCs), and propose two methods to construct such codes with low redundancy and linear-time complexity, based on Knuth’s balancing technique and sequence replacement technique. For certain codes parameters, our methods incur only one redundant bit.
机译:由于通信系统中的各种应用(例如同时进行的能量和信息传输),子块能量受限代码(SECC)最近引起了人们的关注。在SECC中,每个码字被分成较小的子块,并且每个子块被约束以携带足够的能量。在这项工作中,我们研究了更一般的约束条件下的SECC,即有界SECC和滑窗约束代码(SWCC),并基于Knuth的平衡技术和序列替换,提出了两种构建低冗余度和线性时间复杂度的代码的方法。技术。对于某些代码参数,我们的方法仅产生一个冗余位。

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