Where to go from here? New cross layer techniques for LTE Turbo-Code decoding at high code rates

IF 0.9 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
Stefan Weithoffer, N. Wehn
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引用次数: 4

Abstract

Abstract. The wide range of code rates and code block sizes supported by todays wireless communication standards, together with the requirement for a throughput in the order of Gbps, necessitates sophisticated and highly parallel channel decoder architectures. Code rates specified in the LTE standard, which uses Turbo-Codes, range up to r=0.94 to maximize the information throughput by transmitting only a minimum amount of parity information, which negatively impacts the error correcting performance. This especially holds for highly parallel hardware architectures. Therefore, the error correcting performance must be traded-off against the degree of parallel processing. State-of-the-art Turbo-Code decoder hardware architectures are optimized on code block level to alleviate this trade-off. In this paper, we follow a cross-layer approach by combining system level knowledge about the rate-matching and the transport block structure in LTE with the bit-level technique of on-the-fly CRC calculation. Thereby, our proposed Turbo-Code decoder hardware architecture achieves coding gains of 0.4–1.8 dB compared to state-of-the-art accross a wide range of code block sizes. For the fully LTE compatible Turbo-Code decoder, we demonstrate a negligible hardware overhead and a resulting high area and energy efficiency and give post place and route synthesis numbers.
从这里去哪里?用于高码率LTE Turbo码解码的新的跨层技术
摘要当今无线通信标准所支持的广泛的码率和码块大小,以及对Gbps数量级的吞吐量的要求,需要复杂和高度并行的信道解码器架构。使用turbo码的lte标准中指定的码率范围高达r=0.94,通过仅传输最少量的奇偶信息来最大化信息吞吐量,这对纠错性能产生了负面影响。这尤其适用于高度并行的硬件架构。因此,纠错性能必须与并行处理的程度相权衡。最先进的Turbo-Code解码器硬件架构在代码块级别上进行了优化,以减轻这种权衡。在本文中,我们采用跨层方法,将LTE中有关速率匹配和传输块结构的系统级知识与实时CRC计算的位级技术相结合。因此,我们提出的Turbo-Codedecoder硬件架构在广泛的代码块大小范围内实现了0.4-1.8 db的编码增益。对于完全兼容LTE的Turbo-Code解码器,我们展示了可以忽略不计的硬件开销和由此产生的高面积和能源效率,并给出了位置和路由合成数。
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来源期刊
Advances in Radio Science
Advances in Radio Science ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
0.90
自引率
0.00%
发文量
3
审稿时长
45 weeks
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