This paper investigates the use of space-time (ST) coding for high-speed data transmission, as well as studies the effect of time delay spread on such scheme over unequalized fading channels. Using a random variable decomposition technique, we present an analytical model and obtain an approximate bound of the pairwise-error probability for ST coded systems over multipath and time-dispersive fading channels. It is shown that the presence of multipath does not reduce the diversity gain provided by the original design criteria, which is adopted to construct specific ST codes in quasi-static flat fading, but the coding gain diminishes due to the effect of multipath fading
In today’s world the key challenges for wireless communication are the data rate and quality of serv...
The increasing demand for higher data rates and higher quality in wireless communications has motiva...
For the quasi-static, Rayleigh-fading multiple-input multiple-output (MIMO) channel with nt transmit...
The pairwise error probability upper bounds of space-time codes (STCs) in independent Rician fading ...
Most current wireless communication systems are designed for low data rates and low mobility support...
This work provides an overview of the fundamental aspects and of some recent advances in space-time ...
We restate the achievable information rates for multiple transmit multiple receive antenna systems i...
This paper presents the performance of space-time (ST) codes over rapid fading channels. A tight upp...
In this paper the performance of Space Time Codes (STC) & Quasi Orthogonal Space Time Block Cod...
Multiple antennas help in combating the destructive effects of fading as well as improve the spectra...
The object of this doctorate dissertation is the study of space-time coding. The appli- cation of th...
We address the problem of designing and analyzing the performance of a coded modulation scheme for t...
The emergence of wireless communications has transformed the concept of "any time, any where &q...
For the quasi-static, Rayleigh-fading multiple-input multiple-output (MIMO) channel with n(t) tran...
Abstract: Space-Time (ST) codes are known to provide high trans-mission rates, diversity and coding ...
In today’s world the key challenges for wireless communication are the data rate and quality of serv...
The increasing demand for higher data rates and higher quality in wireless communications has motiva...
For the quasi-static, Rayleigh-fading multiple-input multiple-output (MIMO) channel with nt transmit...
The pairwise error probability upper bounds of space-time codes (STCs) in independent Rician fading ...
Most current wireless communication systems are designed for low data rates and low mobility support...
This work provides an overview of the fundamental aspects and of some recent advances in space-time ...
We restate the achievable information rates for multiple transmit multiple receive antenna systems i...
This paper presents the performance of space-time (ST) codes over rapid fading channels. A tight upp...
In this paper the performance of Space Time Codes (STC) & Quasi Orthogonal Space Time Block Cod...
Multiple antennas help in combating the destructive effects of fading as well as improve the spectra...
The object of this doctorate dissertation is the study of space-time coding. The appli- cation of th...
We address the problem of designing and analyzing the performance of a coded modulation scheme for t...
The emergence of wireless communications has transformed the concept of "any time, any where &q...
For the quasi-static, Rayleigh-fading multiple-input multiple-output (MIMO) channel with n(t) tran...
Abstract: Space-Time (ST) codes are known to provide high trans-mission rates, diversity and coding ...
In today’s world the key challenges for wireless communication are the data rate and quality of serv...
The increasing demand for higher data rates and higher quality in wireless communications has motiva...
For the quasi-static, Rayleigh-fading multiple-input multiple-output (MIMO) channel with nt transmit...