Abstract:
To cope with increasing demands for spectral efficiency, multiple-input multiple-output (MIMO) technology is being considered for next generation terrestrial broadcasting...Show MoreMetadata
Abstract:
To cope with increasing demands for spectral efficiency, multiple-input multiple-output (MIMO) technology is being considered for next generation terrestrial broadcasting television systems. In this paper, we propose a MIMO channel-precoder that utilizes channel statistical structure and is suitable for terrestrial broadcasting systems, while being potentially transparent to the receivers. The performance of the channel-precoder is evaluated in a wide set of channel scenarios and mismatched channel conditions, a typical situation in the broadcast setup. Capacity results show performance improvements in the case of strong line-of-sight scenarios with correlated antenna components and resilience against mismatched condition. Finally, we present bit-error-rate simulation results for state-of-the-art digital terrestrial broadcast systems based on digital video broadcasting-next generation handheld to compare the performance of single-input single-output, 2 × 2 and 4 × 2 MIMO systems and proposed MIMO channel-precoder.
Published in: IEEE Transactions on Broadcasting ( Volume: 61, Issue: 3, September 2015)
Funding Agency:
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Terrestrial Systems ,
- Television Set ,
- TV Broadcasting ,
- Terrestrial Broadcasting ,
- Terrestrial TV ,
- Multiple-input Multiple-output ,
- Types Of Situations ,
- Spectral Efficiency ,
- Multiple-input Multiple-output Systems ,
- Single-input Single-output ,
- Channel Statistics ,
- Broadcasting System ,
- Covariance Matrix ,
- Performance Degradation ,
- Data Streams ,
- Channel Model ,
- Positive Semidefinite Matrix ,
- Vertical Polarization ,
- Jensen’s Inequality ,
- Channel Realizations ,
- Multiple-input Multiple-output Channel ,
- Line-of-sight Component ,
- Low-density Parity-check Codes ,
- Ergodic Capacity ,
- Transmitter Antenna ,
- Multiplexing Gain ,
- Digital Television ,
- Spatial Multiplexing ,
- Precoder Design ,
- Mobility Scenarios
- Author Keywords
- Author Free Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Terrestrial Systems ,
- Television Set ,
- TV Broadcasting ,
- Terrestrial Broadcasting ,
- Terrestrial TV ,
- Multiple-input Multiple-output ,
- Types Of Situations ,
- Spectral Efficiency ,
- Multiple-input Multiple-output Systems ,
- Single-input Single-output ,
- Channel Statistics ,
- Broadcasting System ,
- Covariance Matrix ,
- Performance Degradation ,
- Data Streams ,
- Channel Model ,
- Positive Semidefinite Matrix ,
- Vertical Polarization ,
- Jensen’s Inequality ,
- Channel Realizations ,
- Multiple-input Multiple-output Channel ,
- Line-of-sight Component ,
- Low-density Parity-check Codes ,
- Ergodic Capacity ,
- Transmitter Antenna ,
- Multiplexing Gain ,
- Digital Television ,
- Spatial Multiplexing ,
- Precoder Design ,
- Mobility Scenarios
- Author Keywords
- Author Free Keywords