Space-Time Codes for High Data Rate Wireless Communications
Explore this paper's citation graph
Summary
Results show that remarkable energy and spectral efficiencies are achievable by combining concepts drawn from space-time coding, multiuser detection, array processing and iterative decoding.
- Type
- dissertation
- Published
- 2002-04-24
- Cited by
- 1,793
- References
- 152
- Access
- Open access
- OpenAlex
- https://openalex.org/W2529813360
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:10533091
Keywords
Computer science, Wireless, Computer network, Telecommunications
References
- Iterative Detection and Decoding for Wireless Communications
- Information Theory: 1948-1998 - Guest Editorial
- Array Signal Processing: Concepts and Techniques
- Concatenation of space-time block codes and "turbo"-TCM
- Applications of space-time block codes and interference suppression for high capacity and high data rate wireless systems
- Digital Communications Over Fading Channels
- Optimal decoding of linear codes for minimizing symbol error rate
- New space-time block codes for high throughput efficiency
- Coded-Modulation Techniques for Fading Channels
- Principles of Communication Engineering
- MAP equalization of space-time coded signals over frequency selective channels
- Space-time block codes versus space-time trellis codes
- Space-time coding and transmission optimization for wireless channels
- Microwave Mobile Communications
- New views of transfer function based performance analysis of coded modulations
- The impact of channel estimation errors on space-time trellis codes paired with iterative equalization/decoding
- On Limits of Wireless Communications in a Fading Environment when Using Multiple Antennas
- Trellis-coded modulation and transmit diversity: design criteria and performance evaluation
- Differential space-time modulation
- Multiple antenna arrays for transmitter diversity and space-time coding
Cited by
- SC-FDMA for Mobile Communications
- On the Equivalence of Space-Time Block Coding with Multipath Propagation and/or Cyclic Delay Diversity in OFDM
- Space-Time Turbo Codes
- Offset QPSK in SISO and MIMO Environments
- On Development of Some Soft Computing Based Multiuser Detection Techniques for SDMA–OFDM Wireless Communication System
- A reduced complexity MIMO system with antenna selection for high data rate wireless communications
- Some studies on designs of planar antennas for UWB applications
- Comparison of Space-Time Block Coding and Cyclic Delay Diversity for a Broadband Mobile Radio Air Interface
- Reliability-based Detection of Variable-rate Space-time Block Codes
- MIMO channel modelling for indoor wireless communications
- Concatenation of Space-Time Block Codes with ConvolutionalCodes
- Advanced Coding and Modulation for Digital Terrestrial Broadcasting and Cellular Systems
- Collaborative HARQ Schemes for Cooperative Diversity Communications in Wireless Networks
- Sensing and Learning Channel State Information in a Dynamic Wireless Environment with Cognitive Radios and Networks
- Combining Space-Time Block Codes and Multiplexing in Correlated MIMO channels: An Antenna Assignment strategy
- Space-Time Codes Concatenated with Turbo Codes over Fading Channels
- Implementation of Mimo-Ofdm System for Wimax
- EFFICIENT SIMULATION OF SPACE-TIME CODED AND TURBO CODED SYSTEMS
- Combining modulation diversity and index assignment to improve image VQ for a rayleigh fading channel
- Spherical Linear Interpolation for Transmit Beamforming in MIMO-OFDM Systems with Limited Feedback
Related papers
- Space-Time Codes for High Data Rate Wireless Communications : Performance criterion and Code Construction
- A simple transmit diversity technique for wireless communications
- Layered space-time architecture for wireless communication in a fading environment when using multi-element antennas
- Space-Time block codes from orthogonal designs
- On Limits of Wireless Communications in a Fading Environment when Using Multiple Antennas
- Wireless Communications: Principles and Practice
- Detection algorithm and initial laboratory results using V-BLAST space-time communication architecture
- V-BLAST: an architecture for realizing very high data rates over the rich-scattering wireless channel