登录
首页 » matlab » IEEE802.11DCF

IEEE802.11DCF

于 2018-05-22 发布 文件大小:212KB
0 120
下载积分: 1 下载次数: 1

代码说明:

  不同节点数对吞吐率的影响,分别为5节点数和20节点数时的吞吐量的对比情况(The influence of different number of nodes on the throughput of the five nodes and the number of 20 nodes was compared.)

文件列表:

IEEE802.11DCF\adhoc\Add.m, 216 , 2008-10-17
IEEE802.11DCF\adhoc\adhoc.m, 6113 , 2009-06-03
IEEE802.11DCF\adhoc\Average Delay of AdHoc Network M=(10).txt, 2600 , 2009-04-19
IEEE802.11DCF\adhoc\Average Delay of AdHoc Network M=(15).txt, 2600 , 2009-04-19
IEEE802.11DCF\adhoc\Average Delay of AdHoc Network M=(20).txt, 2600 , 2009-04-19
IEEE802.11DCF\adhoc\Average Delay of AdHoc Network M=(25).txt, 2600 , 2009-04-19
IEEE802.11DCF\adhoc\Average Delay of AdHoc Network M=(30).txt, 2600 , 2009-04-19
IEEE802.11DCF\adhoc\Average Delay of AdHoc Network M=(5).txt, 2600 , 2009-04-19
IEEE802.11DCF\adhoc\DelayBuffPop.m, 227 , 2009-04-04
IEEE802.11DCF\adhoc\DelayBuffPush.m, 194 , 2009-04-04
IEEE802.11DCF\adhoc\ExpDis.m, 127 , 2008-10-20
IEEE802.11DCF\adhoc\Increase.m, 140 , 2008-10-20
IEEE802.11DCF\adhoc\MaxLength.m, 235 , 2008-10-17
IEEE802.11DCF\adhoc\Packet Resending Rate of AdHoc Network M=(10).txt, 3000 , 2009-04-19
IEEE802.11DCF\adhoc\Packet Resending Rate of AdHoc Network M=(15).txt, 3000 , 2009-04-19
IEEE802.11DCF\adhoc\Packet Resending Rate of AdHoc Network M=(20).txt, 3000 , 2009-04-19
IEEE802.11DCF\adhoc\Packet Resending Rate of AdHoc Network M=(25).txt, 3000 , 2009-04-19
IEEE802.11DCF\adhoc\Packet Resending Rate of AdHoc Network M=(30).txt, 3000 , 2009-04-19
IEEE802.11DCF\adhoc\Packet Resending Rate of AdHoc Network M=(5).txt, 2800 , 2009-04-19
IEEE802.11DCF\adhoc\PacketLost.m, 182 , 2009-04-03
IEEE802.11DCF\adhoc\pic.m, 23307 , 2009-06-03
IEEE802.11DCF\adhoc\pic_Delay.m, 16085 , 2009-04-20
IEEE802.11DCF\adhoc\Pop.m, 206 , 2009-04-04
IEEE802.11DCF\adhoc\Push.m, 241 , 2009-04-04
IEEE802.11DCF\adhoc\RandSel.m, 123 , 2008-10-17
IEEE802.11DCF\adhoc\Throughput of AdHoc Network M=(10).txt, 3800 , 2009-04-19
IEEE802.11DCF\adhoc\Throughput of AdHoc Network M=(15).txt, 3800 , 2009-04-19
IEEE802.11DCF\adhoc\Throughput of AdHoc Network M=(20).txt, 3800 , 2009-04-19
IEEE802.11DCF\adhoc\Throughput of AdHoc Network M=(25).txt, 3800 , 2009-04-19
IEEE802.11DCF\adhoc\Throughput of AdHoc Network M=(30).txt, 3800 , 2009-04-19
IEEE802.11DCF\adhoc\Throughput of AdHoc Network M=(5).txt, 3800 , 2009-04-19
IEEE802.11DCF\AP\Add.m, 212 , 2009-05-25
IEEE802.11DCF\AP\AP.m, 6956 , 2009-06-03
IEEE802.11DCF\AP\Average Delay of Infrastructured Network M=(10).txt, 2600 , 2009-04-19
IEEE802.11DCF\AP\Average Delay of Infrastructured Network M=(15).txt, 2600 , 2009-04-19
IEEE802.11DCF\AP\Average Delay of Infrastructured Network M=(20).txt, 2603 , 2009-04-19
IEEE802.11DCF\AP\Average Delay of Infrastructured Network M=(25).txt, 2606 , 2009-04-19
IEEE802.11DCF\AP\Average Delay of Infrastructured Network M=(30).txt, 2629 , 2009-04-19
IEEE802.11DCF\AP\Average Delay of Infrastructured Network M=(5).txt, 2600 , 2009-04-19
IEEE802.11DCF\AP\CSMA_CA_AP_2_PLR_DELAY_J.asv, 7348 , 2009-05-24
IEEE802.11DCF\AP\DelayBuffPop.m, 154 , 2009-05-25
IEEE802.11DCF\AP\DelayBuffPush.m, 195 , 2009-05-07
IEEE802.11DCF\AP\ExpDis.m, 127 , 2008-10-20
IEEE802.11DCF\AP\Increase.m, 140 , 2008-10-20
IEEE802.11DCF\AP\MaxLength.m, 235 , 2008-10-17
IEEE802.11DCF\AP\me5to30_Delay.asv, 16182 , 2009-06-03
IEEE802.11DCF\AP\Packet Resending Rate of Infrastructured Network M=(10).txt, 3000 , 2009-04-19
IEEE802.11DCF\AP\Packet Resending Rate of Infrastructured Network M=(15).txt, 3000 , 2009-04-19
IEEE802.11DCF\AP\Packet Resending Rate of Infrastructured Network M=(20).txt, 3000 , 2009-04-19
IEEE802.11DCF\AP\Packet Resending Rate of Infrastructured Network M=(25).txt, 3000 , 2009-04-19
IEEE802.11DCF\AP\Packet Resending Rate of Infrastructured Network M=(30).txt, 3000 , 2009-04-19
IEEE802.11DCF\AP\Packet Resending Rate of Infrastructured Network M=(5).txt, 2867 , 2009-04-19
IEEE802.11DCF\AP\pic.m, 21385 , 2009-06-03
IEEE802.11DCF\AP\pic_Delay.m, 16182 , 2009-06-03
IEEE802.11DCF\AP\Pop.m, 164 , 2009-05-25
IEEE802.11DCF\AP\Push.m, 242 , 2009-05-07
IEEE802.11DCF\AP\RandSel.m, 124 , 2009-05-07
IEEE802.11DCF\AP\Throughput of Infrastructured Network M=(10).txt, 3576 , 2009-04-19
IEEE802.11DCF\AP\Throughput of Infrastructured Network M=(15).txt, 3464 , 2009-04-19
IEEE802.11DCF\AP\Throughput of Infrastructured Network M=(20).txt, 3406 , 2009-04-19
IEEE802.11DCF\AP\Throughput of Infrastructured Network M=(25).txt, 3400 , 2009-04-19
IEEE802.11DCF\AP\Throughput of Infrastructured Network M=(30).txt, 3395 , 2009-04-19
IEEE802.11DCF\AP\Throughput of Infrastructured Network M=(5).txt, 3600 , 2009-04-19
IEEE802.11DCF\BER_change\Add.m, 216 , 2008-10-17
IEEE802.11DCF\BER_change\AP.m, 7311 , 2018-05-16
IEEE802.11DCF\BER_change\Average Delay BER=(0).txt, 1300 , 2009-05-14
IEEE802.11DCF\BER_change\Average Delay BER=(1.000000e-004).txt, 1300 , 2009-05-14
IEEE802.11DCF\BER_change\Average Delay BER=(1.500000e-004).txt, 1300 , 2009-05-14
IEEE802.11DCF\BER_change\Average Delay BER=(2.000000e-004).txt, 1300 , 2009-05-14
IEEE802.11DCF\BER_change\Average Delay BER=(2.500000e-004).txt, 1300 , 2009-05-14
IEEE802.11DCF\BER_change\Average Delay BER=(3.000000e-004).txt, 1300 , 2009-05-14
IEEE802.11DCF\BER_change\Average Delay BER=(3.000000e-04).txt, 11699 , 2018-05-16
IEEE802.11DCF\BER_change\Average Delay BER=(5.000000e-005).txt, 1300 , 2009-05-14
IEEE802.11DCF\BER_change\DelayBuffPop.m, 228 , 2009-05-07
IEEE802.11DCF\BER_change\DelayBuffPush.m, 195 , 2009-05-07
IEEE802.11DCF\BER_change\ExpDis.m, 127 , 2008-10-20
IEEE802.11DCF\BER_change\Increase.asv, 192 , 2009-05-14
IEEE802.11DCF\BER_change\Increase.m, 192 , 2009-05-14
IEEE802.11DCF\BER_change\MaxLength.m, 235 , 2008-10-17
IEEE802.11DCF\BER_change\me5to30_delay.asv, 3206 , 2009-05-21
IEEE802.11DCF\BER_change\me5to30_delay.m, 9706 , 2009-05-21
IEEE802.11DCF\BER_change\Packet Resending Rate BER=(0).txt, 1426 , 2009-05-14
IEEE802.11DCF\BER_change\Packet Resending Rate BER=(1.000000e-004).txt, 1500 , 2009-05-14
IEEE802.11DCF\BER_change\Packet Resending Rate BER=(1.500000e-004).txt, 1500 , 2009-05-14
IEEE802.11DCF\BER_change\Packet Resending Rate BER=(2.000000e-004).txt, 1500 , 2009-05-14
IEEE802.11DCF\BER_change\Packet Resending Rate BER=(2.500000e-004).txt, 1500 , 2009-05-14
IEEE802.11DCF\BER_change\Packet Resending Rate BER=(3.000000e-004).txt, 1500 , 2009-05-14
IEEE802.11DCF\BER_change\Packet Resending Rate BER=(3.000000e-04).txt, 13500 , 2018-05-16
IEEE802.11DCF\BER_change\Packet Resending Rate BER=(5.000000e-005).txt, 1500 , 2009-05-14
IEEE802.11DCF\BER_change\pic.m, 13165 , 2009-05-17
IEEE802.11DCF\BER_change\Pop.m, 207 , 2009-05-07
IEEE802.11DCF\BER_change\Push.m, 242 , 2009-05-07
IEEE802.11DCF\BER_change\RandSel.m, 124 , 2009-05-07
IEEE802.11DCF\BER_change\Throughput BER=(0).txt, 1800 , 2009-05-14
IEEE802.11DCF\BER_change\Throughput BER=(1.000000e-004).txt, 1798 , 2009-05-14
IEEE802.11DCF\BER_change\Throughput BER=(1.500000e-004).txt, 1798 , 2009-05-14
IEEE802.11DCF\BER_change\Throughput BER=(2.000000e-004).txt, 1792 , 2009-05-14
IEEE802.11DCF\BER_change\Throughput BER=(2.500000e-004).txt, 1788 , 2009-05-14
IEEE802.11DCF\BER_change\Throughput BER=(3.000000e-004).txt, 1786 , 2009-05-14
IEEE802.11DCF\BER_change\Throughput BER=(3.000000e-04).txt, 15860 , 2018-05-16

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

  • EM78P153单片机构成多功能433MHz接收
    义隆单片机em78p173发射程序。RF 433M EM78P153单片机构成多功能433MHz(RF TX 433MHZ em78p173)
    2018-01-04 23:04:58下载
    积分:1
  • 基于Matlab GUI的FIR滤波器
    说明:  基于Matlab GUI的FIR滤波器 实际中,一般调用MATLAB信号处理工具箱函数remezord来计算等波纹滤波器阶数N和加权函数W(ω),调用函数remez可进行等波纹滤波器的设计,直接求出滤波器系数。函数remezord中的数组fedge为通带和阻带边界频率,数组mval是两个边界处的幅值,而数组dev是通带和阻带的波动,fs是采样频率单位为Hz。(FIR filter based on matlab gui. In practice, the MATLAB signal processing toolbox function remezord is generally called to calculate the order N of the equiripple filter and the weighting function W . The call function remez can be used to design the equiripple filter and directly calculate the filter coefficients. The array fedge in the function remezord is the pass-band and stop-band boundary frequencies, the array mval is the amplitude at the two boundaries, the array dev is the fluctuation of the pass-band and stop-band, and fs is the sampling frequency unit in Hz.)
    2021-02-14 16:19:48下载
    积分:1
  • ppp
    说明:  利用泊松过程,实现泊松点过程和泊松簇过程(Poisson point process and poisson cluster process are realized by poisson process)
    2021-03-10 20:59:26下载
    积分:1
  • efficient-portfolio
    主要是根据马克维茨的投资组合理论求出有效边界,并确定其权重,分为允许和不允许卖空(efficient portfolio)
    2021-03-13 04:39:24下载
    积分:1
  • fft快速傅里叶变换
    说明:  低通滤波,运用fft快速傅里叶变换,测试文件,已搭构框架(Low-pass filtering, FFT fast Fourier transform, test files, has been constructed framework)
    2019-02-24 12:12:03下载
    积分:1
  • CH341A_driver_win10
    CH341A driver for windows 10
    2020-06-20 01:40:01下载
    积分:1
  • Python
    python排序程序,基于冒泡法排序,可用于成绩自动化排序修改excel(Python sorting program, examples of sorting bubble method, can be used to automate the sorting of results to modify Excel)
    2019-03-25 18:37:51下载
    积分:1
  • 使用VB和MAPX开发的一个比较通用的实例程序
    使用VB和MAPX开发的一个比较通用的实例程序
    2022-07-16 19:27:47下载
    积分:1
  • hubulvbo
    智能车 直立 互补滤波 卡尔曼滤波 源代码 (Complementary filter)
    2013-05-04 23:29:49下载
    积分:1
  • 快速排序的递归解演示,用20个字符串代表20个数,显示每次分组结果,延时10000。如果在你的机子上太快,可以加长延时。...
    快速排序的递归解演示,用20个字符串代表20个数,显示每次分组结果,延时10000。如果在你的机子上太快,可以加长延时。-rapid sequencing of recursive solution demonstrations, with 20 representatives of 20 string number, the results show that each packet, Delay 10000. If your machine on too fast, it could be Long Time Delay.
    2022-02-03 23:19:22下载
    积分:1
  • 696518资源总数
  • 104269会员总数
  • 31今日下载