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Ditemukan 2 dokumen yang sesuai dengan query
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Noviar Azhari
Abstrak :
Orthogonal Frequency Division Multiplexing (OFDM) memberikan efisiensi bandwidth yang lebih tinggi daripada Frequency Division Multiplexing (FDM) biasa. Pada komunitas wireless, sistem OFDM biasanya diterapkan dengan menggunakan Discrete Fourier Transform (DFT) untuk membentuk sinyal OFDM. Akan tetapi, sistem OFDM yang menggunakan transformasi DFT (DFT-OFDM) ini mudah mengalami intersymbol interference (ISI) pada kanal multipath fading. Untuk mengurangi terjadinya ISI pada DFT-OFDM maka digunakan teknik yang disebut dengan cyclic prefix, akan tetapi penggunaannya membutuhkan bandwidth yang lebih lebar sampai 25% dan akan menambah delay. Untuk meningkatkan efisiensi bandwidth dan mengatasi ISI yang terdapat pada sistem DFT-OFDM, maka digunakanlah sistem OFDM menggunakan Discrete Wavelet Transform (DWT-OFDM). Unjuk kerja DFT-OFDM dan DWT-OFDM pada kanal AWGN dan Rayleigh fading dianalisa dalam skripsi ini. Didapatkan bahwa sistem DWT-OFDM memberikan unjuk kerja yang lebih baik dari DFT-OFDM.
Depok: Fakultas Teknik Universitas Indonesia, 2005
S40072
UI - Skripsi Membership  Universitas Indonesia Library
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Speidel, Joachim
Abstrak :
This book offers students, scientists and engineers an extensive introduction to the theoretical fundamentals of digital communications, covering single input single output (SISO), multiple input multiple output (MIMO), and time-variant systems. Further, the main content is supplemented by a wealth of representative examples and computer simulations. The book is divided into three parts, the first of which addresses the principles of wire-line and wireless digital transmission over SISO links. Digital modulation, intersymbol interference, and various detection methods are discussed; models for realistic time-variant, wireless channels are introduced; and the equivalent time-variant baseband system model is derived. Since not all readers may be familiar with this topic, Part II is devoted to the theory of linear time-variant systems. The generalized convolution is derived and readers are introduced to impulse response, the delay spread function, and system functions in the frequency domain. In addition, randomly changing systems are discussed. In turn, Part III deals with MIMO systems. It describes MIMO channel models with and without spatial correlation, including the Kronecker model. Both linear and nonlinear MIMO receivers are investigated. The question of how many bits per channel use can be transmitted is answered and maximizing channel capacity is addressed. Principles of space–time coding are outlined in order to improve transmission quality and increase data rates. In closing, the book describes multi-user MIMO schemes, which reduce interference when multiple users in the same area transmit their signals in the same time slots and frequency bands.
Switzerland: Springer, 2019
e20502744
eBooks  Universitas Indonesia Library