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CDMA line-of-sight data communication system with power control attaining error free condition in presence of inter-sector and inter-cell interference

机译:CDMA视线数据通信系统,具有电源控制的差异存在无码条件,并且在扇区间和电池间干扰

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This paper describes how power control enables one to satisfy the error free condition of a CDMA FDD system for short distance line-of-sight data communication in the presence of inter-sector and inter-cell interference. All sectors and cells are covered by two frequency bands: one for the uplink and the other for the downlink. The data rate is a multiple of 1.5 Mbps. Two 1.5 Mbps channels which are used in synchronization and orthogonal spreading/despreading codes are adopted in both uplink and downlink. The number of actually operating channels in a sector are assumed to be equal to the process gain minus two: this system has a higher spectral efficiency, 21 times that of the conventional TDMA system which uses different frequency bands for all neighboring sectors and cells. Computer simulation is carried out to examine whether the error free condition can be satisfied by power control in the presence of inter-sector, inter-cell interference and thermal noise. Computer simulation has shown that the error free condition can be satisfied when concatenated block and convolutional codes with a code rate 0.44 are adopted.
机译:本文介绍了功率控制如何实现一个以满足CDMA FDD系统的无错误条件,以便在存在扇区间和小区间干扰中的短距离视线数据通信。所有扇区和单元格都被两个频段覆盖:一个用于上行链路的一个,另一个用于下行链路。数据速率为1.5 Mbps的倍数。在上行链路和下行链路中采用两个1.5 Mbps通道,用于同步和正交扩展/解扩码。假设扇区中实际操作通道的实际操作信道的数量等于过程增益减号:该系统具有更高的光谱效率,传统TDMA系统的21倍,其使用用于所有相邻扇区和单元的不同频带。执行计算机模拟,以检查是否可以在存在扇区间,电池间干扰和热噪声的情况下进行功率控制来满足无错误状态。计算机仿真表明,当采用码率0.44时,可以满足错误的块和卷积码。

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