登录
首页 » matlab » spectre-master

spectre-master

于 2019-01-13 发布 文件大小:390KB
0 145
下载积分: 1 下载次数: 4

代码说明:

  The implementation in 1.5x faster than MATLAB 2018a mex code generation (GCC 7.3, Intel Core i7-4790K) for single core mode. * Support GCC, Clang, Intel Compiler. Intel Compiler 2018 in 2.75x faster than GCC 7.3 for single core mode. * OpenMP for SCMA signals loop (outer loop) * `intel_compiler_opt` branch with additional oprimization for Intel Compiler (the fatest results) ## Build * Edit `MATLAB_DIR` in Makefile. * Run `make`. ## Future work Improve of performance.

文件列表:

spectre-master, 0 , 2018-07-04
spectre-master\README.md, 2352 , 2018-07-04
spectre-master\awgn, 0 , 2018-07-04
spectre-master\awgn\betaq_low_v2.m, 4043 , 2018-07-04
spectre-master\awgn\betaq_up_v2.m, 3031 , 2018-07-04
spectre-master\awgn\biawgn_stats.m, 828 , 2018-07-04
spectre-master\awgn\cap_awgn.m, 48 , 2018-07-04
spectre-master\awgn\converse.m, 173 , 2018-07-04
spectre-master\awgn\feinstein_approx.m, 951 , 2018-07-04
spectre-master\awgn\gallager_ach.m, 3250 , 2018-07-04
spectre-master\awgn\kappa.m, 3294 , 2018-07-04
spectre-master\awgn\kappa_inf.m, 221 , 2018-07-04
spectre-master\awgn\kappabeta_ach.m, 683 , 2018-07-04
spectre-master\awgn\ncx2log.m, 1492 , 2018-07-04
spectre-master\awgn\normapx_awgn.m, 186 , 2018-07-04
spectre-master\awgn\normapx_biawgn.m, 148 , 2018-07-04
spectre-master\awgn\optpower.m, 362 , 2018-07-04
spectre-master\awgn\plot_v3.m, 3730 , 2018-07-04
spectre-master\awgn\shannon_ach2.m, 9468 , 2018-07-04
spectre-master\awgn\universe, 0 , 2018-07-04
spectre-master\awgn\universe\load_awgncodes.m, 9154 , 2018-07-04
spectre-master\awgn\universe\me_ldpc, 0 , 2018-07-04
spectre-master\awgn\universe\me_ldpc\.gitignore, 18 , 2018-07-04
spectre-master\awgn\universe\me_ldpc\compute_ab.c, 7802 , 2018-07-04
spectre-master\awgn\universe\me_ldpc\me_multin.m, 2184 , 2018-07-04
spectre-master\awgn\universe\me_ldpc\me_snr.m, 570 , 2018-07-04
spectre-master\awgn\universe\output, 0 , 2018-07-04
spectre-master\awgn\universe\output\.gitignore, 12 , 2018-07-04
spectre-master\awgn\universe\plot_universe.m, 7858 , 2018-07-04
spectre-master\awgn\universe\plot_universe_db.m, 3905 , 2018-07-04
spectre-master\bec, 0 , 2018-07-04
spectre-master\bec\converse.m, 264 , 2018-07-04
spectre-master\bec\converse_spec2.m, 2063 , 2018-07-04
spectre-master\bec\dt_ach.m, 1567 , 2018-07-04
spectre-master\bec\gallager_ach.m, 832 , 2018-07-04
spectre-master\bec\mdist.m, 401 , 2018-07-04
spectre-master\bec\normapx.m, 124 , 2018-07-04
spectre-master\bec\plot_all.m, 846 , 2018-07-04
spectre-master\bec\sumlog2.m, 745 , 2018-07-04
spectre-master\bi-awgn, 0 , 2018-07-04
spectre-master\bi-awgn\converse_mc.m, 12437 , 2018-07-04
spectre-master\bi-awgn\example_per.m, 1068 , 2018-07-04
spectre-master\bi-awgn\example_per.mat, 2776 , 2018-07-04
spectre-master\bi-awgn\example_speff.m, 1240 , 2018-07-04
spectre-master\bi-awgn\example_speff.mat, 1965 , 2018-07-04
spectre-master\block-fading-PAT-SNN, 0 , 2018-07-04
spectre-master\block-fading-PAT-SNN\QPSK_Alamouti_eps.m, 1156 , 2018-07-04
spectre-master\block-fading-PAT-SNN\QPSK_SIMO_eps.m, 1176 , 2018-07-04
spectre-master\block-fading-PAT-SNN\eps_RCUs.m, 183 , 2018-07-04
spectre-master\block-fading-PAT-SNN\eps_RCUs_Alamouti_stable.m, 3481 , 2018-07-04
spectre-master\block-fading-PAT-SNN\eps_RCUs_SPA.m, 994 , 2018-07-04
spectre-master\block-fading-PAT-SNN\eps_RCUs_stable.m, 3357 , 2018-07-04
spectre-master\block-fading-PAT-SNN\idgallagerqpsknn.m, 813 , 2018-07-04
spectre-master\block-fading-PAT-SNN\idsamples.m, 1128 , 2018-07-04
spectre-master\block-fading-PAT-SNN\idsamples_Alamouti.m, 1982 , 2018-07-04
spectre-master\block-fading-PAT-SNN\qpsksample.m, 385 , 2018-07-04
spectre-master\block-fading-PAT-SNN\randcn.m, 400 , 2018-07-04
spectre-master\block-fading-PAT-SNN\relspread.m, 406 , 2018-07-04
spectre-master\bsc, 0 , 2018-07-04
spectre-master\bsc\betanq.m, 2424 , 2018-07-04
spectre-master\bsc\converse.m, 219 , 2018-07-04
spectre-master\bsc\dt_ach.m, 2262 , 2018-07-04
spectre-master\bsc\gallager_ach.m, 867 , 2018-07-04
spectre-master\bsc\normapx.m, 206 , 2018-07-04
spectre-master\bsc\plot_all.m, 1163 , 2018-07-04
spectre-master\bsc\precise_rand.m, 799 , 2018-07-04
spectre-master\bsc\rcu_ach.m, 1585 , 2018-07-04
spectre-master\bsc\sumlog2.m, 822 , 2018-07-04
spectre-master\documentation, 0 , 2018-07-04
spectre-master\documentation\.gitignore, 127 , 2018-07-04
spectre-master\documentation\IEEEabrv.bib, 17463 , 2018-07-04
spectre-master\documentation\Makefile, 5063 , 2018-07-04
spectre-master\documentation\confs-jrnls.bib, 37228 , 2018-07-04
spectre-master\documentation\defs_giuseppe.tex, 1256 , 2018-07-04
spectre-master\documentation\manual.tex, 62676 , 2018-07-04
spectre-master\documentation\plots, 0 , 2018-07-04
spectre-master\documentation\plots\awgn_plot3_ex.eps, 16870 , 2018-07-04
spectre-master\documentation\plots\awgn_plot3_ex.pdf, 7843 , 2018-07-04
spectre-master\documentation\plots\bec_example.eps, 12648 , 2018-07-04
spectre-master\documentation\plots\bec_example.pdf, 5084 , 2018-07-04
spectre-master\documentation\plots\biawgn_plot1_ex.pdf, 16637 , 2018-07-04
spectre-master\documentation\plots\block-csir-mimo.png, 19080 , 2018-07-04
spectre-master\documentation\plots\bsc_example.eps, 12822 , 2018-07-04
spectre-master\documentation\plots\bsc_example.pdf, 5102 , 2018-07-04
spectre-master\documentation\plots\compress_gms.eps, 12340 , 2018-07-04
spectre-master\documentation\plots\energy_awgn.eps, 15752 , 2018-07-04
spectre-master\documentation\plots\energy_awgn.pdf, 6320 , 2018-07-04
spectre-master\documentation\plots\energy_nocsi.eps, 14211 , 2018-07-04
spectre-master\documentation\plots\energy_nocsi.pdf, 5879 , 2018-07-04
spectre-master\documentation\plots\quasi-static-simo.eps, 13904 , 2018-07-04
spectre-master\documentation\plots\quasi-static-simo.pdf, 5700 , 2018-07-04
spectre-master\documentation\plots\snr6eps03M2.pdf, 54666 , 2018-07-04
spectre-master\documentation\refs.bib, 4061 , 2018-07-04
spectre-master\energy-per-bit, 0 , 2018-07-04
spectre-master\energy-per-bit\energy_awgn_ach.m, 889 , 2018-07-04
spectre-master\energy-per-bit\energy_awgn_conv.m, 333 , 2018-07-04
spectre-master\energy-per-bit\energy_awgn_normapx.m, 255 , 2018-07-04
spectre-master\energy-per-bit\energy_csir_conv.m, 1782 , 2018-07-04
spectre-master\energy-per-bit\energy_nocsi_ach_ht.m, 1450 , 2018-07-04
spectre-master\energy-per-bit\energy_nocsi_ach_ml.m, 4122 , 2018-07-04

下载说明:请别用迅雷下载,失败请重下,重下不扣分!

发表评论

0 个回复

  • Promer
    说明:  AY90S2313 AVR Promer
    2020-06-22 10:00:01下载
    积分:1
  • OpenCV-Python-Toturial-中文版
    OpenCV是一个基于BSD许可(开源)发行的跨平台计算机视觉库,可以运行在Linux、Windows、Android和Mac OS操作系统上。(OpenCV is a cross-platform computer vision library based on BSD license (open source), which can run on Linux, Windows, Android and MacOS operating systems.)
    2020-06-18 17:00:02下载
    积分:1
  • 俄罗斯方块源程序 玩过俄罗斯方块的,都知道
    俄罗斯方块源程序 玩过俄罗斯方块的,都知道-Russian box source played the Russian box, we would have known
    2022-04-10 10:48:24下载
    积分:1
  • iprober_php
    说明:  IProber is a fairly simple and easy to use PHP host probe. The main function is to query the relevant host information and the PHP and Apache settings of the PHP web server. If you often encounter some special web programs that require the support of PHP or Apache special functions, you can use this probe to check whether the current machine settings are turned on or off. Or you can rent the virtual host, and you can also inquire about the host's configuration and performance through this probe
    2017-09-11 10:34:38下载
    积分:1
  • 介绍ar,和dtw两种算法,包含一个实际应用的例子
    介绍ar,和dtw两种算法,包含一个实际应用的例子-introduced ar, and two algorithms dtw, including a practical application examples
    2022-05-26 21:12:02下载
    积分:1
  • 1234566KALMAN
    在Matlab环境下的kalman滤波程序,有助于理解kalman的原理及其应有-1234566KALMAN
    2023-06-18 17:00:03下载
    积分:1
  • all_m_files_20130826
    说明:  芬兰学者Simo Sarkka 所著《贝叶斯滤波与平滑》一书中的程序,包括容积卡尔曼滤波、高斯厄米特积分滤波和粒子滤波(Programs in the book Bayesian Filtering and Smoothing by Finnish scholar Simo Sarkka, including volumetric Kalman filter, Gaussian Hermitian integral filtering and particle filtering)
    2020-06-21 16:20:01下载
    积分:1
  • 设计一个多功能数字钟,以一昼夜24小时为一个计数周期。准确计时,具有“时”“分”“秒”数字显示。整点能自动打点、报时。要求报时声响四低一高,最后一响为整点。具有...
    设计一个多功能数字钟,以一昼夜24小时为一个计数周期。准确计时,具有“时”“分”“秒”数字显示。整点能自动打点、报时。要求报时声响四低一高,最后一响为整点。具有校时功能。要求电路主要采用中小规模CMOS集成电路。要求电路尽量简化,并选用同类型的器件。在EWB电子工作平台上进行电路的设计和计算机仿真。-The design of a multi-function digital clock, 24 hours a day for a cycle count. Accurate time, a
    2022-03-16 08:45:17下载
    积分:1
  • 管理系统
    管理系统- Management system management system
    2022-07-09 10:49:32下载
    积分:1
  • Fingerprint
    基于指纹识别身份验证的数据采集系统设计与实现-Fingerprint-based authentication of the data acquisition system design and implementation
    2022-12-26 23:55:03下载
    积分:1
  • 696518资源总数
  • 105717会员总数
  • 10今日下载