TxCP: A Coprocessor for LTE-A

With the widely use of 4G network, the corresponding bandwidth processing has become a critical issue. The current recognized 4G network is LTE-A. In the baseband processing for LTE-A, the processing of its physical layer algorithm is the biggest bottleneck for current processors. The use of applica...

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Main Authors: Huang Xin, Liu QingBin, Wu JunNing, Du XueLiang, Wang DongLin
Format: Article
Language:English
Published: EDP Sciences 2017-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201712801011
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author Huang Xin
Liu QingBin
Wu JunNing
Du XueLiang
Wang DongLin
author_facet Huang Xin
Liu QingBin
Wu JunNing
Du XueLiang
Wang DongLin
author_sort Huang Xin
collection DOAJ
description With the widely use of 4G network, the corresponding bandwidth processing has become a critical issue. The current recognized 4G network is LTE-A. In the baseband processing for LTE-A, the processing of its physical layer algorithm is the biggest bottleneck for current processors. The use of application specific integrated circuit (ASIC) design has become necessary. This article will introduce a communication dedicated coprocessor (TxCP), specifically for LTE-A physical layer uplink shared/control channel (PUSCH/PUCCH) algorithm for bit-level acceleration. Its internal support for PUSCH/PUCCH CRC, Turbo encoding, equation definable convolutional encoding, data channel and control channel rate matching, channel interleaving, scrambling and modulation supporting QPSK, 16QAM and 64QAM. And in order to ensure that the coprocessor has a certain degree of flexibility, its internal controller design will support a variety of modes to ensure that some of the algorithm modules can be run separately. The programming model of the processor is relatively simple, and the user does not need to go through a complicated design.
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spelling doaj.art-bfeac2fa747f493d82ac953a3fbaa04e2022-12-21T23:38:57ZengEDP SciencesMATEC Web of Conferences2261-236X2017-01-011280101110.1051/matecconf/201712801011matecconf_eitce2017_01011TxCP: A Coprocessor for LTE-AHuang XinLiu QingBinWu JunNingDu XueLiangWang DongLinWith the widely use of 4G network, the corresponding bandwidth processing has become a critical issue. The current recognized 4G network is LTE-A. In the baseband processing for LTE-A, the processing of its physical layer algorithm is the biggest bottleneck for current processors. The use of application specific integrated circuit (ASIC) design has become necessary. This article will introduce a communication dedicated coprocessor (TxCP), specifically for LTE-A physical layer uplink shared/control channel (PUSCH/PUCCH) algorithm for bit-level acceleration. Its internal support for PUSCH/PUCCH CRC, Turbo encoding, equation definable convolutional encoding, data channel and control channel rate matching, channel interleaving, scrambling and modulation supporting QPSK, 16QAM and 64QAM. And in order to ensure that the coprocessor has a certain degree of flexibility, its internal controller design will support a variety of modes to ensure that some of the algorithm modules can be run separately. The programming model of the processor is relatively simple, and the user does not need to go through a complicated design.https://doi.org/10.1051/matecconf/201712801011
spellingShingle Huang Xin
Liu QingBin
Wu JunNing
Du XueLiang
Wang DongLin
TxCP: A Coprocessor for LTE-A
MATEC Web of Conferences
title TxCP: A Coprocessor for LTE-A
title_full TxCP: A Coprocessor for LTE-A
title_fullStr TxCP: A Coprocessor for LTE-A
title_full_unstemmed TxCP: A Coprocessor for LTE-A
title_short TxCP: A Coprocessor for LTE-A
title_sort txcp a coprocessor for lte a
url https://doi.org/10.1051/matecconf/201712801011
work_keys_str_mv AT huangxin txcpacoprocessorforltea
AT liuqingbin txcpacoprocessorforltea
AT wujunning txcpacoprocessorforltea
AT duxueliang txcpacoprocessorforltea
AT wangdonglin txcpacoprocessorforltea