2023年全國碩士研究生考試考研英語一試題真題(含答案詳解+作文范文)_第1頁
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1、 Classified Index: TN929.5 U.D.C: 654.1 Dissertation for the Master Degree in Engineering STUDY ON THE LOW COMPLEXITY DETECTION OF GENERALIZED SPATIAL MODULATION Candidate: Chen Wang Supervisor: Associate Prof. Chungan

2、g Liu Academic Degree Applied for: Master of Engineering Speciality: Information and Communication Engineering Affiliation: School of Electronics and Information Engineering Date of Defence: June, 2017 Degree-Conferri

3、ng-Institution: Harbin Institute of Technology 哈爾濱工業(yè)大學(xué)工學(xué)碩士學(xué)位論文 II Abstract Spatial modulation (SM) has been recognized as a promising MIMO transmission technology which can effectively reduce the number of radio frequenc

4、y (RF) chain to develop energy-efficient, low-complexity solutions that satisfy target throughput requirements in future mobile networks. Generalized spatial modulation (GSM) is a generalization of SM. Comparing with SM,

5、 GSM has more than one active transmit antenna in every symbol time, which promotes the transmission rate while making the signal detection more complicate. Based on the operational principle of SM, the paper summarizes

6、and analyzes two main merits of SM: the simplification of RF and the promotion of spectral efficiency. Meanwhile, the existing problem and future of SM is discussed. Aim for the low complexity detection in overdetermine

7、d system, the general steps of lattice reduction (LR) aided linear detection for GSM is given. However, the elements in transmit vector should be consecutive integers, which cannot be satisfied for GSM modulated by gener

8、al QAM/PSK. In order to solve the compatible problem in application of LR-aid linear detection in GSM, a special 8-QAM constellation is proposed. Then, the paper proves that LR-aided linear equalizers collect the same di

9、versity order as that exploited by the ML detector under Rayleigh fading channels and proves it by simulation. By simulation on BER performance, the superior of the proposed 8-QAM over traditional 4-QAM and 8-QAM under R

10、ayleigh fading channel is testified. Moreover, the scheme obtains the full receive diversity under correlated channel. In addition, the complexity lattice reduction brings is negligible under the transmit antenna number

11、constraint in the uplink of GSM. As for the underdetermined system in GSM, based on the enhanced Orthogonal Matching Pursuit (E-OMP) algorithm which applies the signal recover algorithm in compressive sensing (CS), the e

12、nhanced Stagewise Orthogonal Matching Pursuit (E-StOMP) algorithm that can reduce the complexity of E-OMP is proposed while the E-StOMP suffers a BER deterioration. Considering the ‘error floor’ phenomenon in the E-OMP a

13、nd E-StOMP algorithm, an Ordered Block Minimum Mean-Squared Error (OB-MMSE) detector based on the OMP algorithm that have a BER superiority in BER performance on OB-MMSE detector while still keep a nearly same complexity

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