The sampler timing (phase) sensitivity of wireless communication systems is discussed in this paper. Based on the matched filter bound technique, a tight error performance bound is derived for systems experiencing frequency selective Rayleigh fading, with the receiver timing offset being quantified in the error performance expressions. With the error performance bound, the timing phase sensitivity of systems with both symbol spaced receivers and fractionally spaced receivers is analyzed. Simulation results show that the new bound can accurately predict the performance of practical communication systems suffering both frequency selective fading and timing phase offset. © 2005 IEEE
This thesis studies space-time coded transmissions over frequency-selective channels. For this, the...
The matched filter bound for space-time block coded multiple-input multiple-output systems in a freq...
In This paper presents the proposition of the tracking algorithm of the carrier frequency and sampli...
The sampler timing (phase) sensitivity of wireless communication systems is discussed in this paper....
Receiver timing phase is one of the essential factors defining the performance of wireless communica...
Theoretical error performances of wireless communication systems suffering from both doubly selectiv...
Theoretical error performances of communication systems with doubly-selective (time-varying and freq...
This paper presents an analysis of the effect of carrier frequency offset (CFO) on offset QAM (OQAM)...
This paper presents an analysis of the effect of carrier frequency offset (CFO) on offset QAM (OQAM)...
Orthogonal frequency division multiplexing (OFDM) is a powerful technique employed in communication ...
The development of low-complexity blind techniques for equalization and timing synchronization is of...
Estimation and tracking of the frequency-selective time-varying channel response is a challenging ta...
Orthogonal frequency division multiplexing (OFDM) is a powerful technique employed in communication ...
Nowadays, most wireless communications employ OFDM technology to reduce signal interference. Its sen...
Estimation and tracking of the frequency-selective time-varying channel response is a challenging ta...
This thesis studies space-time coded transmissions over frequency-selective channels. For this, the...
The matched filter bound for space-time block coded multiple-input multiple-output systems in a freq...
In This paper presents the proposition of the tracking algorithm of the carrier frequency and sampli...
The sampler timing (phase) sensitivity of wireless communication systems is discussed in this paper....
Receiver timing phase is one of the essential factors defining the performance of wireless communica...
Theoretical error performances of wireless communication systems suffering from both doubly selectiv...
Theoretical error performances of communication systems with doubly-selective (time-varying and freq...
This paper presents an analysis of the effect of carrier frequency offset (CFO) on offset QAM (OQAM)...
This paper presents an analysis of the effect of carrier frequency offset (CFO) on offset QAM (OQAM)...
Orthogonal frequency division multiplexing (OFDM) is a powerful technique employed in communication ...
The development of low-complexity blind techniques for equalization and timing synchronization is of...
Estimation and tracking of the frequency-selective time-varying channel response is a challenging ta...
Orthogonal frequency division multiplexing (OFDM) is a powerful technique employed in communication ...
Nowadays, most wireless communications employ OFDM technology to reduce signal interference. Its sen...
Estimation and tracking of the frequency-selective time-varying channel response is a challenging ta...
This thesis studies space-time coded transmissions over frequency-selective channels. For this, the...
The matched filter bound for space-time block coded multiple-input multiple-output systems in a freq...
In This paper presents the proposition of the tracking algorithm of the carrier frequency and sampli...