登录
首页 » matlab » D2D单小区功率控制

D2D单小区功率控制

于 2021-04-08 发布 文件大小:762KB
0 226
下载积分: 1 下载次数: 8

代码说明:

  D2D通信中开环功控的演示,并对其进行编译(Demonstration of open-loop power control in D2D communication)

文件列表:

single_cell PowerControl\accessOrHandover.m, 2194 , 2014-05-06
single_cell PowerControl\cellInstall.m, 1121 , 2014-04-07
single_cell PowerControl\coordinateSetting.m, 1320 , 2014-03-26
single_cell PowerControl\CUEtoD2D_interferencePathLoss.m, 4922 , 2014-05-07
single_cell PowerControl\D2DPathLoss.m, 5429 , 2014-05-07
single_cell PowerControl\D2DtoBS_inteferencePathLoss.m, 4824 , 2014-05-07
single_cell PowerControl\D2DTxPowerProcess.m, 1925 , 2014-05-06
single_cell PowerControl\effectiveSinrMetric.m, 1295 , 2014-04-22
single_cell PowerControl\generateChannelInfo.m, 1560 , 2014-05-07
single_cell PowerControl\generateLargeScaleChannel.m, 6537 , 2014-05-06
single_cell PowerControl\getChannelMatrix.m, 1622 , 2014-04-28
single_cell PowerControl\getFrequencyResponse.m, 1925 , 2014-03-06
single_cell PowerControl\linkLevelSimulation.m, 9064 , 2014-03-06
single_cell PowerControl\mapThroughputSINR.m, 3315 , 2014-05-07
single_cell PowerControl\mcsSelect.m, 695 , 2014-04-29
single_cell PowerControl\output.m, 10476 , 2014-05-11
single_cell PowerControl\performanceCFPC.m, 11008 , 2014-05-11
single_cell PowerControl\performanceJS.m, 9386 , 2014-05-07
single_cell PowerControl\Powerschedule.m, 8300 , 2014-05-07
single_cell PowerControl\randomCoorInHexagon.m, 1208 , 2014-03-18
single_cell PowerControl\README.txt, 98 , 2014-03-06
single_cell PowerControl\refreshAverageThroughput.m, 2555 , 2014-04-25
single_cell PowerControl\result\JS_17-51_11-May-2014\cdf.fig, 71011 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\cdf.jpg, 94587 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\result.txt, 446 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data10_1_1.mat, 3633 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data11_1_1.mat, 3554 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data12_1_1.mat, 3202 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data13_1_1.mat, 3170 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data14_1_1.mat, 3648 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data15_1_1.mat, 3575 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data16_1_1.mat, 3593 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data17_1_1.mat, 3582 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data18_1_1.mat, 3517 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data19_1_1.mat, 3586 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data1_1_1.mat, 3538 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data20_1_1.mat, 3680 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data21_1_1.mat, 3487 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data22_1_1.mat, 3217 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data23_1_1.mat, 3502 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data24_1_1.mat, 3604 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data25_1_1.mat, 3664 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data26_1_1.mat, 3636 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data27_1_1.mat, 3629 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data28_1_1.mat, 3590 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data29_1_1.mat, 3401 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data2_1_1.mat, 3696 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data30_1_1.mat, 3205 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data31_1_1.mat, 3590 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data32_1_1.mat, 3518 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data33_1_1.mat, 3547 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data34_1_1.mat, 3228 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data35_1_1.mat, 3779 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data36_1_1.mat, 3594 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data37_1_1.mat, 3571 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data38_1_1.mat, 3614 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data39_1_1.mat, 3577 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data3_1_1.mat, 3553 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data40_1_1.mat, 3589 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data41_1_1.mat, 3489 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data42_1_1.mat, 3563 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data43_1_1.mat, 3469 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data44_1_1.mat, 3663 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data45_1_1.mat, 3553 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data46_1_1.mat, 3607 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data47_1_1.mat, 3635 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data48_1_1.mat, 3626 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data49_1_1.mat, 3477 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data4_1_1.mat, 3495 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data50_1_1.mat, 3488 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data5_1_1.mat, 3608 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data6_1_1.mat, 3718 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data7_1_1.mat, 3546 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data8_1_1.mat, 3539 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\scheme1\data9_1_1.mat, 3497 , 2014-05-11
single_cell PowerControl\result\JS_17-51_11-May-2014\set.mat, 333 , 2014-05-11
single_cell PowerControl\result\JS_17-53_11-May-2014\cdf.fig, 71665 , 2014-05-11
single_cell PowerControl\result\JS_17-53_11-May-2014\cdf.jpg, 94493 , 2014-05-11
single_cell PowerControl\result\JS_17-53_11-May-2014\result.txt, 446 , 2014-05-11
single_cell PowerControl\result\JS_17-53_11-May-2014\scheme1\data10_1_1.mat, 3589 , 2014-05-11
single_cell PowerControl\result\JS_17-53_11-May-2014\scheme1\data11_1_1.mat, 3645 , 2014-05-11
single_cell PowerControl\result\JS_17-53_11-May-2014\scheme1\data12_1_1.mat, 3611 , 2014-05-11
single_cell PowerControl\result\JS_17-53_11-May-2014\scheme1\data13_1_1.mat, 3618 , 2014-05-11
single_cell PowerControl\result\JS_17-53_11-May-2014\scheme1\data14_1_1.mat, 3508 , 2014-05-11
single_cell PowerControl\result\JS_17-53_11-May-2014\scheme1\data15_1_1.mat, 3589 , 2014-05-11
single_cell PowerControl\result\JS_17-53_11-May-2014\scheme1\data16_1_1.mat, 3134 , 2014-05-11
single_cell PowerControl\result\JS_17-53_11-May-2014\scheme1\data17_1_1.mat, 3593 , 2014-05-11
single_cell PowerControl\result\JS_17-53_11-May-2014\scheme1\data18_1_1.mat, 3230 , 2014-05-11
single_cell PowerControl\result\JS_17-53_11-May-2014\scheme1\data19_1_1.mat, 3603 , 2014-05-11
single_cell PowerControl\result\JS_17-53_11-May-2014\scheme1\data1_1_1.mat, 3477 , 2014-05-11
single_cell PowerControl\result\JS_17-53_11-May-2014\scheme1\data20_1_1.mat, 3720 , 2014-05-11
single_cell PowerControl\result\JS_17-53_11-May-2014\scheme1\data21_1_1.mat, 3732 , 2014-05-11
single_cell PowerControl\result\JS_17-53_11-May-2014\scheme1\data22_1_1.mat, 3494 , 2014-05-11
single_cell PowerControl\result\JS_17-53_11-May-2014\scheme1\data23_1_1.mat, 3611 , 2014-05-11
single_cell PowerControl\result\JS_17-53_11-May-2014\scheme1\data24_1_1.mat, 3655 , 2014-05-11
single_cell PowerControl\result\JS_17-53_11-May-2014\scheme1\data25_1_1.mat, 3556 , 2014-05-11
single_cell PowerControl\result\JS_17-53_11-May-2014\scheme1\data26_1_1.mat, 3642 , 2014-05-11
single_cell PowerControl\result\JS_17-53_11-May-2014\scheme1\data27_1_1.mat, 3639 , 2014-05-11
single_cell PowerControl\result\JS_17-53_11-May-2014\scheme1\data28_1_1.mat, 3206 , 2014-05-11
single_cell PowerControl\result\JS_17-53_11-May-2014\scheme1\data29_1_1.mat, 3468 , 2014-05-11

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

  • PCALEv1073A_FI
    说明:  automatic link establishment radio software
    2019-02-14 17:55:00下载
    积分:1
  • SSDA_080721
    SSDA算法是一种快速图像匹配算法,希望对大家有所帮助!(SSDA algorithm is a fast image matching algorithm, we want to help!)
    2010-01-13 20:39:02下载
    积分:1
  • polar2018
    Polar码学习。实际测试BER特性基本与文献Kai Niu;?Kai Chen;?Jiaru Lin;?Q. T. Zhang, ?Polar?codes:?Primary?concepts?and practical decoding   algorithms,IEEE Communications Magazine 一致(this is about polar code)
    2018-11-09 11:15:51下载
    积分:1
  • OFDM_MIMO_v100
    matlab simulink component
    2017-08-28 12:26:07下载
    积分:1
  • pi/4-dqpsk,可实现FPGA与电脑自发自收z_1 (2)
    说明:  pi/4-dqpsk,可实现FPGA与电脑自发自收(pi/4-dqpsk,It can realize the self receiving of computer and FPGA)
    2020-07-19 19:43:33下载
    积分:1
  • DWT_OFDM
    Performance Evaluation of DWT
    2020-10-10 14:47:34下载
    积分:1
  • TPC-decode
    MATLAB环境下实现了基于Chase II译码算法的Turbo乘积码[TPC]译码的程序。(MATLAB-based implementation environment Chase II decoding algorithm of Turbo Product Code [TPC] decoding process.)
    2009-02-26 09:58:56下载
    积分:1
  • MIMO-OFDM
    运用matlab搭建了MIMO—OFDM系统,并仿真了该系统在awgn信道,平坦衰落和多径信道下的误码率。(Using matlab built a MIMO-OFDM systems, and simulation of the system in awgn channel, flat fading and multipath channel BER.)
    2011-11-10 20:54:37下载
    积分:1
  • hilbert
    产生正弦信号时域波形及频谱,并通过希尔伯特滤波器。其中希尔伯特滤波器有两种产生方式,一是使用MATLAB自带的FDAtool;二是程序编写。(The time-domain waveform and spectrum of sinusoidal signal are generated and passed through Hilbert filter. There are two ways to generate Hilbert filter, one is to use FDAtool in MATLAB, the other is to write programs.)
    2019-01-09 15:16:42下载
    积分:1
  • 7
    说明:  7. 单径瑞利信道中的两发一收STBC: (1) 分析误码率的理论性能,画出比特信噪比与误码率的关系曲线。 (2) 请设计一种具体的导引辅助的信道估计方法,用Simulink进行仿真,测量BPSK调制时的误码率性能。画出比特信噪比与信道估计均方误差的关系曲线,画出比特信噪比与误码率的关系曲线。(7. Two outgoing and one outgoing STBC in single-path Rayleigh channel: (1) analyze the theoretical performance of bit error rate and draw the curve of the relationship between bit SNR and bit error rate. (2) please design a specific navigation-assisted channel estimation method, Simulink simulation, measurement of BPSK modulation error rate performance.The relation curve between the bit signal-noise ratio and the mean square error of channel estimation is drawn, and the relation curve between the bit signal-noise ratio and the bit error rate is drawn.)
    2021-01-23 11:58:45下载
    积分:1
  • 696518资源总数
  • 106161会员总数
  • 5今日下载