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The application of Smart Antennas in TD-SCDMA

机译:智能天线在TD-SCDMA中的应用

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In this paper, the application of Smart Antennas (SA) in TD-SCDMA is discussed. Generally, people consider that the SA have the SDMA (Space Division Multiple Access) effect, based on which the directional beamforming of transmission/receiving can be achieved. That is to say, in TD-SCDMA, on single carrier, simultaneous directional receiving/transmitting is expected to be achieved by using a set of SA. And in order to achieve the simultaneous directional receiving/transmitting, the amplitude-weighting technology of receiving/transmitting baseband signal can be adopted. The two characteristic come from transceiver reciprocity. However, in CDMA, the reciprocity can not be applied unconditionally. For the receiving, the independent directional multi-beamforming can be achieved, by the weight method of carrier or baseband signals. However, as to transmission, the simultaneous directional independent multi-beamforming of multiple CDMA users could not be achieved on single carrier. Therefore, it is better to study carefully whether the SA can work well in TD-SCDMA. In order to take good use of SA in TD-SCDMA standard, we also proposed a high-speed data transmission CDMA / TDMA reform schema about the use of SA in TD-SCDMA.
机译:本文讨论了智能天线在TD-SCDMA中的应用。通常,人们认为SA具有SDMA(空分多址)效果,基于此可以实现发送/接收的定向波束成形。也就是说,在TD-SCDMA中,在单载波上,期望通过使用一组SA来实现同时的定向接收/发送。并且为了实现同步的定向接收/发送,可以采用接收/发送基带信号的幅度加权技术。这两个特性来自收发器的互易性。但是,在CDMA中,互惠性不能无条件地适用。对于接收,可以通过载波或基带信号的加权方法来实现独立的定向多波束形成。然而,关于传输,不能在单个载波上实现多个CDMA用户的同时定向独立的多波束形成。因此,最好仔细研究SA是否可以在TD-SCDMA中正常工作。为了更好地利用TD-SCDMA标准中的SA,我们还提出了有关TD-SCDMA中SA的使用的高速数据传输CDMA / TDMA改革方案。

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