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
0 316
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

  • 2
    说明:  2. 关于无线信道的多普勒谱,请回答以下问题: (1) 在某些无线信道中,多普勒频移会引起无线信道输出信号的混叠。请描述产生混叠的各种原因; (2) 无线信道中的多普勒谱有一种经典谱(classic spectrum),请解释产生这种谱形状的机理; (3) 请用Simulink工具编写代码(S-Function方式),产生一单径瑞利信道,其多普勒谱为经典谱,其中移动速率为120km/h。并请描述:自己用计算机产生的经典谱是正确的依据。(2. Regarding the doppler spectrum of the wireless channel, please answer the following questions: (1) in some wireless channels, doppler frequency shift will cause aliasing of the output signals of the wireless channel.Describe the various causes of aliasing; (2) there is a classic spectrum in the doppler spectrum in the wireless channel, please explain the mechanism of producing this spectrum shape; (3) please use Simulink tool to write code (s-function mode) to generate a single-path Rayleigh channel, whose doppler spectrum is the classical spectrum, in which the moving rate is 120km/h.And please describe: your own computer generated classical spectrum is the correct basis.)
    2021-01-23 19:48:44下载
    积分:1
  • ofdm
    基于导频的OFDM信道估计算法及性能分析pdf论文(Pilot-based OFDM channel estimation algorithm and performance analysis pdf paper)
    2020-10-21 20:07:24下载
    积分:1
  • gps信号模拟软件
    说明:  GPS信号模拟软件,模拟GPS设备向串口输出0183格式标准语句,配合串口虚拟工具使用,可以在普通电脑上调试(GPS signal simulation software, which simulates GPS equipment to output 0183 standard statements to serial port, can be debugged on ordinary computer with serial virtual tools.)
    2020-06-24 13:20:02下载
    积分:1
  • MIMO检测算法
    实现各种MIMO检测算法,包括MRC,ZF,MMSE和SIC(Implementation of MIMO Detection Algorithms)
    2019-05-26 08:55:49下载
    积分:1
  • QAM
    说明:  16QAM调制解调,包含QAM的调制解调Matlab程序(16QAM modem, including QAM modem matlab program)
    2021-03-26 16:49:12下载
    积分:1
  • nbs_vs_cbs
    uwb 天线选择算法 基于范数的选择算法和基于相关的选择算法的比较(UWB antenna selection algorithm based on the norm of the selection algorithm and selection algorithm based on the relevant comparison)
    2021-04-24 14:28:46下载
    积分:1
  • li2
    它是以概率统计理论为基础,依据大数定律(样本均值代替总体均值),利用电子计算机数字模拟技术,通过不断产生随机序列来模拟事件的过程,来解决一些很难直接用数学运算求解或其他方法不能解决的复杂问题的一种近似算法,它既可模拟随机事件,也可模拟确定性事件。(It is based on the theory of probability and statistics, based on the law of large numbers (the mean of sample instead of the average), and using the digital simulation technology of electronic computer to simulate the process of events by constantly generating random sequences to solve some complicated problems which are difficult to be solved directly by mathematical calculation or by other methods. Like algorithm, it can simulate both random events and deterministic events.)
    2018-07-05 10:10:18下载
    积分:1
  • ofdm
    用matlab完成正交频分复用ofdm系统的信号发射与接收仿真(ofdm communication using matlab)
    2020-12-18 17:59:10下载
    积分:1
  • SISO
    siso信道模型,用于建立基础的点对点信道(SISO channel Model)
    2012-04-08 11:33:22下载
    积分:1
  • BER-pts
    说明:  降低OFDM系统PAPR的pts算法的仿真程序,已经在matlab下仿真过。(lower OFDM algorithm pts PAPR of the simulation program, already under Matlab simulation too.)
    2020-10-26 10:10:00下载
    积分:1
  • 696516资源总数
  • 106914会员总数
  • 0今日下载