This title presents the key aspects of multiple antenna transceiver techniques for evolving 3G systems and beyond. MIMO and MISO (transmit diversity) techniques are explained in a common setting; in particular, the book covers linear processing transmit diversity methods with and without side information at the transmitter (feedback), including the current transmit diversity concepts in the WCDMA standards, as well as promising MIMO concepts, crucial for future high data rate systems.
This title presents the key aspects of multiple antenna transceiver techniques for evolving 3G systems and beyond. MIMO and MISO (transmit diversity) techniques are explained in a common setting; in particular, the book covers linear processing transmit diversity methods with and without side information at the transmitter (feedback), including the current transmit diversity concepts in the WCDMA standards, as well as promising MIMO concepts, crucial for future high data rate systems.
Ari Hottinen is the author of Multi-antenna Transceiver Techniques for 3G and Beyond, published by Wiley. Olav Tirkkonen is the author of Multi-antenna Transceiver Techniques for 3G and Beyond, published by Wiley. Risto Wichman is the author of Multi-antenna Transceiver Techniques for 3G and Beyond, published by Wiley.
Inhaltsangabe
Preface. Acronyms. PART I: INTRODUCTION. Background. Diversity Gain, SNR Gain and Rate Increase. PART II: OPEN LOOP METHODS. Open loop Concepts: Background. Matrix Modulation: Low SNR Aspects. Increasing Symbol Rate: Quasi orthogonal Layers. Receiver Algorithms. Matrix Modulation: High SNR Aspects. Robust and Practical Open loop Designs. High rate Designs for MIMO Systems. PART III: CLOSED LOOP METHODS. Closed loop Methods: Selected Multi antenna Extensions. Analysis of Closed loop Concepts. Hybrid Closed loop and Open loop Methods. Appendix A: Symmetries, Invariants and Inequalities. Appendix B: Matrix Representations of Clifford Algebras. References. Index.
Preface. Acronyms. PART I: INTRODUCTION. Background. Diversity Gain, SNR Gain and Rate Increase. PART II: OPEN LOOP METHODS. Open loop Concepts: Background. Matrix Modulation: Low SNR Aspects. Increasing Symbol Rate: Quasi orthogonal Layers. Receiver Algorithms. Matrix Modulation: High SNR Aspects. Robust and Practical Open loop Designs. High rate Designs for MIMO Systems. PART III: CLOSED LOOP METHODS. Closed loop Methods: Selected Multi antenna Extensions. Analysis of Closed loop Concepts. Hybrid Closed loop and Open loop Methods. Appendix A: Symmetries, Invariants and Inequalities. Appendix B: Matrix Representations of Clifford Algebras. References. Index.
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