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Partial transmit sequence based low complexity receiver for multi-user STBC MC-CDMA system

机译:用于多用户STBC MC-CDMA系统的基于部分传输序列的低复杂度接收机

摘要

Space Time Block Code Multi Carrier Code Division Multiple Access (STBC MC-CDMA) is a promising technology for 4G wireless communication systems. STBC is a special form of Multiple Input Multiple Output (MIMO) originally employed for 2 transmit antennas (Nt) and 1 receive antenna (Nr) by Alamouti under flat fading conditions. So application of STBC to frequency selective channel is challenging and has attracted attention of many researchers. Hence, STBC is integrated with multicarrier techniques such as Orthogonal Frequency Division Multiplexing (OFDM) and Multi Carrier Code Division Multiple Access (MC-CDMA), which convert frequency selective channel to several flat fading channels thereby eliminating ISI and in turn need of equalization. Like all other multicarrier techniques STBC MC-CDMA also suffers from high Peak-to-Average Power (PAPR) problem. To combat the problem ofhigh PAPR, many techniques have been proposed,among which Partial Transmit Sequence (PTS) is considered to be the best PAPR reduction schemebut at a cost of high computational complexity. This dissertation mainly focusses on implementation of PTS technique to STBC MC-CDMA scheme for downlink scenario. Also, a low complexity receiver is designed for the above scheme where the equalization is carried out in time domain basis. Also the proposedSTBC MC-CDMA with PTS scheme is comparedwith Single Input Single Output (SISO) MC-CDMA with PTS scheme in terms ofComplementary Cumulative Distribution Function (CCDF) andBit Error Rate(BER) performance. The simulation results verify that STBC MC-CDMA outperforms SISO MC-CDMA under fading conditions. Alsoas the no of users increase, CCDF performanceimproves and BER performance degrades.
机译:空时分组码多载波码分多址(STBC MC-CDMA)是一种用于4G无线通信系统的有前途的技术。 STBC是多输入多输出(MIMO)的一种特殊形式,最初由Alamouti在平坦衰落条件下用于2个发射天线(Nt)和1个接收天线(Nr)。因此,将STBC应用于频率选择信道具有挑战性,并引起了许多研究者的关注。因此,STBC与诸如正交频分复用(OFDM)和多载波码分多址(MC-CDMA)之类的多载波技术集成在一起,这些技术将频率选择信道转换为几个平坦衰落信道,从而消除了ISI,进而需要均衡。像所有其他多载波技术一样,STBC MC-CDMA也遭受高峰均功率(PAPR)问题。为了解决高PAPR的问题,已经提出了许多技术,其中部分传输序列(PTS)被认为是最佳的PAPR降低方案,但是以高计算复杂度为代价。本文主要针对下行场景将PTS技术应用于STBC MC-CDMA方案。另外,针对上述方案设计了低复杂度的接收机,其中在时域基础上进行均衡。在互补累积分布函数(CCDF)和误码率(BER)性能方面,将拟议的带PTS方案的STBC MC-CDMA与带PTS方案的单输入单输出(SISO)MC-CDMA进行了比较。仿真结果验证了STBC MC-CDMA在衰落条件下的性能优于SISO MC-CDMA。另外,随着用户数量的增加,CCDF性能将提高,而BER性能将下降。

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    Behera S;

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  • 年度 2014
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