首页> 外国专利> INDOOR RADIO TRANSMISSION METHOD FOR PARALLEL RADIO TRANSMISSION OF DIGITAL DATA SUB-STREAMS AND A MOBILE RADIO TRANSMISSION SYSTEM

INDOOR RADIO TRANSMISSION METHOD FOR PARALLEL RADIO TRANSMISSION OF DIGITAL DATA SUB-STREAMS AND A MOBILE RADIO TRANSMISSION SYSTEM

机译:数字数据子流并行无线传输的室内无线传输方法和移动无线传输系统

摘要

The invention relates to a novel radio transmission method and a wireless transmission system comprising multiple, transmitter and receiver antennas simultaneously operating within the same frequency range and space-time encoders and decoders. Said method is based on the known BLAST method, according to which data transmission and channel matrix measurement take place in a temporally alternating manner to determine the transmission behaviour. Precise novel measuring technology for the channel matrix is introduced so that both operations can take place synchronously. Characteristic pilot signals (Pi(t)) that are unequivocally recognisable are super-imposed with low-noise on the data sub-signals (Di(t)) in the transmitter (Tx) and are used in the receiver (Rx) for the analogue measurement of the channel matrix ([H]) in a weighting unit (WU) and for the analogue recovery of the transmitted data sub-signals (Di(t)) from the received signals (Ej(t)). The analogue measured values (I, Q) are digitally processed in a signal processor (DSP). The weightings (Ii,j) thus determined are then impressed upon the received signals by means of IQ modulators (IQ modij), as a principal circuit constituent (Ej(t)). The received signals are then totalled in an analogue signal processing unit (ASU). The synchronism and the extensive hardware structure permit high-speed data transmission rates of up to 100 Mbit/s with a high spectral efficiency. One possible application is the wireless indoor LAN.
机译:本发明涉及一种新颖的无线电传输方法和无线传输系统,其包括多个在同一频率范围内同时工作的发射机和接收机天线以及空时编码器和解码器。所述方法基于已知的BLAST方法,根据该方法,数据传输和信道矩阵测量以时间上交替的方式进行以确定传输行为。介绍了用于信道矩阵的精确新颖的测量技术,从而使两种操作可以同步进行。明确识别的特征导频信号(Pi(t))低噪声叠加在发射机(Tx)的数据子信号(Di(t))上,并在接收机(Rx)中用于在加权单元(WU)中对通道矩阵([H])进行模拟测量,并从接收信号(Ej(t))中模拟恢复发送的数据子信号(Di(t))。模拟测量值(I,Q)在信号处理器(DSP)中进行数字处理。然后借助于IQ调制器(IQ modij)将这样确定的权重(Ii,j)施加到接收信号上,作为主要电路组成部分(Ej(t))。然后将接收到的信号汇总到模拟信号处理单元(ASU)中。同步和广泛的硬件结构允许高达100 Mbit / s的高速数据传输速率和高频谱效率。一种可能的应用是室内无线局域网。

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