Realization of a MIMO 2×2 SUI Channel Simulation on the LabVIEW platform
碩士 === 國立臺灣海洋大學 === 通訊與導航工程系 === 95 === Wireless communication technique is developed in two directions which include higher throughput and channel capacity. Therefore, how to improve the communication quality efficiently is a focus all the while. In this study, we use the LabVIEW software developed...
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ndltd-TW-095NTOU53000102015-10-13T11:31:39Z http://ndltd.ncl.edu.tw/handle/94244498996050107371 Realization of a MIMO 2×2 SUI Channel Simulation on the LabVIEW platform MIMO2×2SUI通道模式在LabVIEW環境之實現 Chao-Yang Kuo 郭朝揚 碩士 國立臺灣海洋大學 通訊與導航工程系 95 Wireless communication technique is developed in two directions which include higher throughput and channel capacity. Therefore, how to improve the communication quality efficiently is a focus all the while. In this study, we use the LabVIEW software developed in American NI company, and apply the Kronecker channel model and Jakes Model to build the MIMO channel. We use the Jakes Model to generate four independent and identically distributed multi-path fading channels, and substitute the four channels into SUI (Stanford University Interim) Channel model environment, as well as change these spatial correlations between antennas of the transmitter and the receiver. With different SUI channel model and Bit Error Rate (BER) simulations performed using Alamouti Space-Time coding and QPSK (Quadrature Phase Shift Keying) modulation, confirms accuracy of this design. John F. An 安仲芳 2007 學位論文 ; thesis 60 zh-TW |
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碩士 === 國立臺灣海洋大學 === 通訊與導航工程系 === 95 === Wireless communication technique is developed in two directions which include higher throughput and channel capacity. Therefore, how to improve the communication quality efficiently is a focus all the while. In this study, we use the LabVIEW software developed in American NI company, and apply the Kronecker channel model and Jakes Model to build the MIMO channel. We use the Jakes Model to generate four independent and identically distributed multi-path fading channels, and substitute the four channels into SUI (Stanford University Interim) Channel model environment, as well as change these spatial correlations between antennas of the transmitter and the receiver.
With different SUI channel model and Bit Error Rate (BER) simulations performed using Alamouti Space-Time coding and QPSK (Quadrature Phase Shift Keying) modulation, confirms accuracy of this design.
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John F. An |
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John F. An Chao-Yang Kuo 郭朝揚 |
author |
Chao-Yang Kuo 郭朝揚 |
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Chao-Yang Kuo 郭朝揚 Realization of a MIMO 2×2 SUI Channel Simulation on the LabVIEW platform |
author_sort |
Chao-Yang Kuo |
title |
Realization of a MIMO 2×2 SUI Channel Simulation on the LabVIEW platform |
title_short |
Realization of a MIMO 2×2 SUI Channel Simulation on the LabVIEW platform |
title_full |
Realization of a MIMO 2×2 SUI Channel Simulation on the LabVIEW platform |
title_fullStr |
Realization of a MIMO 2×2 SUI Channel Simulation on the LabVIEW platform |
title_full_unstemmed |
Realization of a MIMO 2×2 SUI Channel Simulation on the LabVIEW platform |
title_sort |
realization of a mimo 2×2 sui channel simulation on the labview platform |
publishDate |
2007 |
url |
http://ndltd.ncl.edu.tw/handle/94244498996050107371 |
work_keys_str_mv |
AT chaoyangkuo realizationofamimo22suichannelsimulationonthelabviewplatform AT guōcháoyáng realizationofamimo22suichannelsimulationonthelabviewplatform AT chaoyangkuo mimo22suitōngdàomóshìzàilabviewhuánjìngzhīshíxiàn AT guōcháoyáng mimo22suitōngdàomóshìzàilabviewhuánjìngzhīshíxiàn |
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1716845449378267136 |