Download e-book for iPad: Baseband Receiver Design for Wireless MIMO-OFDM by Tzi-Dar Chiueh

By Tzi-Dar Chiueh

ISBN-10: 1118188187

ISBN-13: 9781118188187

ISBN-10: 1118188195

ISBN-13: 9781118188194

The moment variation of OFDM Baseband Receiver layout for Wirless Communications, this ebook expands at the past version with more advantageous insurance of MIMO thoughts, extra baseband algorithms, and extra IC layout examples. The authors conceal the complete variety of OFDM expertise, from theories and algorithms to architectures and circuits.

The booklet offers a concise but entire examine electronic verbal exchange basics sooner than explaining sign processing algorithms in receivers. The authors supply particular therapy of concerns - from structure to IC implementation.

  • Links OFDM and MIMO conception with implementation
  • Enables the reader to move conversation got recommendations into undefined; layout instant receivers with appropriate implemntation loss; in achieving low-power designs
  • Covers the newest criteria, resembling DVB-T2, WiMax, LTE and LTE-A
  • Includes extra baseband algorithms, like soft-decoding algorithms similar to BCJR and SOVA
  • Expanded remedy of channel types, detection algorithms and MIMO techniques
  • Features concrete layout examples of WiMAX platforms and cognitive radio apllications
  • Companion site with lecture slides for instructors

Based on fabrics constructed for a direction in electronic conversation IC layout, this booklet is perfect for graduate scholars and researchers in VLSI layout, instant communications, and communications sign processing. practising engineers engaged on algorithms or for instant communications units also will locate this to be a key reference.

Content:
Chapter 1 creation (pages 1–15):
Chapter 2 electronic Modulation (pages 17–38):
Chapter three complicated instant know-how (pages 39–68):
Chapter four Error?Correcting Codes (pages 69–94):
Chapter five sign Propagation and Channel version (pages 95–123):
Chapter 6 Synchronization (pages 125–165):
Chapter 7 Channel Estimation and Equalization (pages 167–208):
Chapter eight MIMO Detection (pages 209–249):
Chapter nine Circuit suggestions (pages 251–292):
Chapter 10 MIMO IC layout Examples (pages 293–320):
Chapter eleven cellular MIMO WiMAX System?on?Chip layout (pages 321–341): Gene C.H. Chuang, Pan?An Ting, Ying?Chuan Hsiao, Jen?Yuan Hsu, Jiun?You Lai, Cheng?Ming Chen and Chi?Tien solar

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Additional info for Baseband Receiver Design for Wireless MIMO-OFDM Communications

Sample text

9] T. Nakamura, 2009. “Proposal for candidate radio interface technologies for IMT-Advanced based on LTE Release 10 and beyond (LTE-Advanced),” ITU-R WP 5D, Third Workshop on IMT-Advanced, October. [10] M. Kottkamp, 2010. “LTE-Advanced technology introduction,” White Paper, 1MA169 2e, Rohde & Schwarz, July. org/15/ [12] ECMA, 2008. “High rate ultra wideband PHY and MAC standard,” ECMA-368 Standard, December. [13] IEEE, 2009. 3c-2009. docx [16] WiGig, 2007. “Defining the future of multi-gigabit wireless communications,” White Paper, July.

5 Ch. 9 (a) Conventional non-overlapping multi-carrier modulation. (b) Overlapping multi-carrier modulation. 1 Orthogonal Frequency-Division Multiplexing Conventionally, the multi-carrier transmitter consists of a set of modulators, each with different carrier frequencies. The transmitter then combines the modulator outputs and generates the transmitted signal. Suppose that the N data to be transmitted are Xk , k = 0, 1, . . , N − 1, where Xk is a complex number in a given constellation, such as QPSK or QAM.

11(b). The length of the guard interval is made longer than the delay spread of the wireless channel. As a result, the degree of delay spread in the operating environments must be known and considered during OFDM system design. Note that the guard interval actually wastes transmission resources, so the ratio of the guard interval length to the effective OFDM symbol duration is usually kept below one quarter. During the guard interval, the transmitter can send a null waveform. 11(b). A ZP-OFDM system has lower transmission power and simpler transmitter structure.

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Baseband Receiver Design for Wireless MIMO-OFDM Communications by Tzi-Dar Chiueh


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