Description: LTE中的turbo编码相关程序,依据36协议中的规定而写,如有不完善处,请自行修改-LTE in the turbo coding procedures, based on 36 written to the provisions of the agreement, if imperfect, you should go its own decisions Platform: |
Size: 59392 |
Author:雨儿 |
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Description: 3GPP interleaver 3gpp 交织器 ,混淆输入循序,与LTE可对比 可应用于turbo等编码中-3GPP interleaver 3gpp interleaver, enter the progressive confusion, can be compared with the LTE can be used in turbo coding, etc. Platform: |
Size: 2048 |
Author:dingwei |
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Description: LTE中的turbo编码相关程序,依据36协议中的规定而写,如有不完善处,请自行修改-LTE in the turbo coding procedures, based on 36 written to the provisions of the agreement, if imperfect, you should go its own decisions
Platform: |
Size: 39936 |
Author:Razor |
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Description: LTE-A系统上行链路中各模块Matlab程序仿真---turbo编码仿真程序-Uplink in LTE-A system simulation program of each module of the Matlab program simulation- the turbo coding Platform: |
Size: 2048 |
Author:张丽娟 |
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Description: LTE中基于QPP交织器的turbo编码器。服从LTE协议,并且将交织参数单独列在txt文档中。-In LTE turbo coding based on QPP interleaver. Obey LTE protocols, and interleaving parameters are listed separately in the txt document. Platform: |
Size: 1039360 |
Author:潘潘 |
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Description: LTE中的速率匹配部分,在turbo编码后使用。已经分好模块,包括子块交织以及比特收集和修剪等部分。-Rate matching section in the LTE turbo coding. Has been divided into many modules, including the part of the sub-block interleaving and bit collection and pruning. Platform: |
Size: 1027072 |
Author:潘潘 |
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Description: Long-Term Evolution (LTE) is a new standard specied by 3GPP for fourth generation (4G)
wireless communications. LTE provides high spectral eciency, high peak data rates, short
round trip time, and frequency
exibility. It relies on the following technologies Orthog-
onal Frequency Division Multiplexing (OFDM) and Multiple-Input and Multiple- Output
(MIMO), robust channel coding, scheduling and link adaptation [1]. LTE is interoperable
with widely used technologies such as GPRS, WCDMA and HSPA, and this enables mobile
operators deploying LTE to provide a seamless service and multimode devices for customers.
Some companies have already launched commercial LTE networks, e.g., Verizon Wireless in
the United States and Vodafone in Europe.
Here,the throughput of LTE physical layer in downlink transmissions is carried out. The various steps like CRC,turbo coding, code block segmentation,scrambling, modulation and precoding are also carried out.-Long-Term Evolution (LTE) is a new standard specied by 3GPP for fourth generation (4G)
wireless communications. LTE provides high spectral eciency, high peak data rates, short
round trip time, and frequency
exibility. It relies on the following technologies Orthog-
onal Frequency Division Multiplexing (OFDM) and Multiple-Input and Multiple- Output
(MIMO), robust channel coding, scheduling and link adaptation [1]. LTE is interoperable
with widely used technologies such as GPRS, WCDMA and HSPA, and this enables mobile
operators deploying LTE to provide a seamless service and multimode devices for customers.
Some companies have already launched commercial LTE networks, e.g., Verizon Wireless in
the United States and Vodafone in Europe.
Here,the throughput of LTE physical layer in downlink transmissions is carried out. The various steps like CRC,turbo coding, code block segmentation,scrambling, modulation and precoding are also carried out. Platform: |
Size: 4096 |
Author:anju |
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Description: LTE中的全部已调好的程序,包括turbo编解码,层映射,卷积编码,下行链路调试-LTE has been tuned in all the programs, including turbo codec, layer mapping, convolution coding, debugging and so on the downlink Platform: |
Size: 465920 |
Author:柳川枫 |
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Description: LTE system,
OFDM modulation and Turbo
Coding, including Viterbi, BCJR
and SOVA are extensively analysed,
ending up with a system performance
specification. These are
used to implement a fixed length
Turbo encoder, a 16-QAM modulator
and a 16 point IFFT on an
FPGA using MATLAB Simulink⃝ R
with Xilinx⃝ R System Generator plugin.
A MATLAB⃝ R script is developed
to test the Simulink implementation.
In addition, an iterative
Turbo decoder is programmed using
MATLAB⃝ R . Platform: |
Size: 11264 |
Author:mezo |
Hits:
Description: LTE system,
OFDM modulation and Turbo
Coding, including Viterbi, BCJR
and SOVA are extensively analysed,
ending up with a system performance
specification. These are
used to implement a fixed length
Turbo encoder, a 16-QAM modulator
and a 16 point IFFT on an
FPGA using MATLAB Simulink⃝ R
with Xilinx⃝ R System Generator plugin.
A MATLAB⃝ R script is developed
to test the Simulink implementation.
In addition, an iterative
Turbo decoder is programmed using
MATLAB⃝ R . Platform: |
Size: 11264 |
Author:mezo |
Hits:
Description: Throughout the project the LTE system,
OFDM modulation and Turbo
Coding, including Viterbi, BCJR
and SOVA are extensively analysed,
ending up with a system performance
specification. These are
used to implement a fixed length
Turbo encoder, a 16-QAM modulator
and a 16 point IFFT on an
FPGA using MATLAB Simulink R ⃝
with Xilinx R ⃝ System Generator plugin.
A MATLAB R ⃝ script is developed
to test the Simulink implementation.
In addition, an iterative
Turbo decoder is programmed using
MATLAB R ⃝ .-Throughout the project the LTE system,
OFDM modulation and Turbo
Coding, including Viterbi, BCJR
and SOVA are extensively analysed,
ending up with a system performance
specification. These are
used to implement a fixed length
Turbo encoder, a 16-QAM modulator
and a 16 point IFFT on an
FPGA using MATLAB Simulink R ⃝
with Xilinx R ⃝ System Generator plugin.
A MATLAB R ⃝ script is developed
to test the Simulink implementation.
In addition, an iterative
Turbo decoder is programmed using
MATLAB R ⃝ . Platform: |
Size: 2099200 |
Author:mezo |
Hits:
Description: The reference turbo decoder supports the Successive Interference Cancellation (SIC)
technique, which may be employed by the basestation eNB receiver as the channel
coding equalisation technique to improve the throughput performance in the LTE-A
standard. Platform: |
Size: 324608 |
Author:ghorbanii
|
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Description: Turbo codes were first proposed by Berrou (and others) in 1993. Since its introduction,
turbo code has become the coding technique of choice in many communication and
storage systems due to its near Shannon limit error correction capability. These
applications include 3GPP, consultative committee for space application (CCSDS)
telemetry channel coding, worldwide interoperability for microwave access
(WiMAX), and 3GPP LTE, which require throughputs in the range from two t Platform: |
Size: 194560 |
Author:mahdi
|
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