Zero entries in Complex Orthogonal Designs (CODs) impede their practical implementation. In this paper, a method of obtaining a No Zero Entry (NZE) code for 2<sup>k+1</sup> antennas whenever a NZE code exists for 2<sup>k</sup> antennas is presented. This is achieved with slight increase in the ML decoding complexity for regular QAM constellations and no increase for other complex constellations. Since NZE CODs have been constructed recently for 8 antennas our method leads to NZE codes for 16 antennas. Simulation results show good performance of our new codes compared to the well known constructions for 16 and 32 antennas under peak power constraints
It is known that the Alamouti code is the only Complex Orthogonal Design (COD) which achieves capaci...
It is known that the Alamouti code is the only complex orthogonal design (COD) which achieves capaci...
It is well known that communication systems employing multiple transmit and multiple receive antenna...
Zero entries in complex orthogonal designs (CODs) impede their practical implementation. In this p...
Space-time codes from complex orthogonal designs (CODs) with no zero entries offer low Peak to Avera...
Space-time codes from complex orthogonal designs (CODs) with no zero entries offer low Peak to Ave...
Space-time codes from complex orthogonal designs (CODs) with no zero entries offer low peak to avera...
Space-time codes from complex orthogonal designs (CODs) with no zero entries offer low Peak to Avera...
Abstract—Space-time codes from complex orthogonal designs (CODs) with no zero entries offer low Peak...
Space-Time Block Codes from square complex orthogonal designs (SCOD) have been extensively studied a...
Space-time Block Codes from Square Complex Orthogonal Designs (SCOD) have been extensively studied a...
Space-Time Block Codes from square complex orthogonal designs (SCOD) have been extensively studied a...
The maximal rate of a nonsquare complex orthogonal design for transmit antennas is 1/2 + 1/n if is e...
Space-time block codes based on orthogonal designs are used for wireless communications with multipl...
The maximal rate of a nonsquare complex orthogonal design for n transmit antennas is [1/2]+[1/(n)] i...
It is known that the Alamouti code is the only Complex Orthogonal Design (COD) which achieves capaci...
It is known that the Alamouti code is the only complex orthogonal design (COD) which achieves capaci...
It is well known that communication systems employing multiple transmit and multiple receive antenna...
Zero entries in complex orthogonal designs (CODs) impede their practical implementation. In this p...
Space-time codes from complex orthogonal designs (CODs) with no zero entries offer low Peak to Avera...
Space-time codes from complex orthogonal designs (CODs) with no zero entries offer low Peak to Ave...
Space-time codes from complex orthogonal designs (CODs) with no zero entries offer low peak to avera...
Space-time codes from complex orthogonal designs (CODs) with no zero entries offer low Peak to Avera...
Abstract—Space-time codes from complex orthogonal designs (CODs) with no zero entries offer low Peak...
Space-Time Block Codes from square complex orthogonal designs (SCOD) have been extensively studied a...
Space-time Block Codes from Square Complex Orthogonal Designs (SCOD) have been extensively studied a...
Space-Time Block Codes from square complex orthogonal designs (SCOD) have been extensively studied a...
The maximal rate of a nonsquare complex orthogonal design for transmit antennas is 1/2 + 1/n if is e...
Space-time block codes based on orthogonal designs are used for wireless communications with multipl...
The maximal rate of a nonsquare complex orthogonal design for n transmit antennas is [1/2]+[1/(n)] i...
It is known that the Alamouti code is the only Complex Orthogonal Design (COD) which achieves capaci...
It is known that the Alamouti code is the only complex orthogonal design (COD) which achieves capaci...
It is well known that communication systems employing multiple transmit and multiple receive antenna...