文件名称:code_multihop_last-1
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- 上传时间:2013-07-13
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文件大小:650.09kb
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The objective of this project is to investigate the possibility of applying a dynamic channel allocation to cMCN. The proposed method is a multihop dynamic channel assignment (MDCA) scheme that works by assigning channels based on interference information in the surrounding cells. A channel searching strategy, sequential channel searching (SCS) is developed for the MDCA scheme. This strategy is responsible for the channel updation which includes channel assignment for a new request and channel release after the completion of the communication process. Through computer simulation, we show that the proposed MDCA scheme using the SCS strategy improves the system capacity significantly.- The objective of this project is to investigate the possibility of applying a dynamic channel allocation to cMCN. The proposed method is a multihop dynamic channel assignment (MDCA) scheme that works by assigning channels based on interference information in the surrounding cells. A channel searching strategy, sequential channel searching (SCS) is developed for the MDCA scheme. This strategy is responsible for the channel updation which includes channel assignment for a new request and channel release after the completion of the communication process. Through computer simulation, we show that the proposed MDCA scheme using the SCS strategy improves the system capacity significantly.
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下载文件列表
code_multihop_last/A1.m
code_multihop_last/analys.m
code_multihop_last/bndl.mat
code_multihop_last/bw.m
code_multihop_last/cent_iit_table.mat
code_multihop_last/cent_node.mat
code_multihop_last/comn.m
code_multihop_last/creat_ntw.m
code_multihop_last/data_ex.m
code_multihop_last/Final_path.mat
code_multihop_last/fn_tmso.mat
code_multihop_last/fn_tmth.mat
code_multihop_last/i1.mat
code_multihop_last/i2.mat
code_multihop_last/IIT.mat
code_multihop_last/IIT_updt.mat
code_multihop_last/k1.mat
code_multihop_last/k_n.mat
code_multihop_last/main.m
code_multihop_last/msc_mont.m
code_multihop_last/n5.mat
code_multihop_last/node.m
code_multihop_last/path23.m
code_multihop_last/R1.m
code_multihop_last/route.m
code_multihop_last/RT.mat
code_multihop_last/r_t.mat
code_multihop_last/sel_channel.m
code_multihop_last/so.m
code_multihop_last/so_comm.m
code_multihop_last/th.m
code_multihop_last/th_comm.m
code_multihop_last/updt.m
code_multihop_last/v1.mat
code_multihop_last/v2.mat
code_multihop_last
code_multihop_last/analys.m
code_multihop_last/bndl.mat
code_multihop_last/bw.m
code_multihop_last/cent_iit_table.mat
code_multihop_last/cent_node.mat
code_multihop_last/comn.m
code_multihop_last/creat_ntw.m
code_multihop_last/data_ex.m
code_multihop_last/Final_path.mat
code_multihop_last/fn_tmso.mat
code_multihop_last/fn_tmth.mat
code_multihop_last/i1.mat
code_multihop_last/i2.mat
code_multihop_last/IIT.mat
code_multihop_last/IIT_updt.mat
code_multihop_last/k1.mat
code_multihop_last/k_n.mat
code_multihop_last/main.m
code_multihop_last/msc_mont.m
code_multihop_last/n5.mat
code_multihop_last/node.m
code_multihop_last/path23.m
code_multihop_last/R1.m
code_multihop_last/route.m
code_multihop_last/RT.mat
code_multihop_last/r_t.mat
code_multihop_last/sel_channel.m
code_multihop_last/so.m
code_multihop_last/so_comm.m
code_multihop_last/th.m
code_multihop_last/th_comm.m
code_multihop_last/updt.m
code_multihop_last/v1.mat
code_multihop_last/v2.mat
code_multihop_last
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