In this paper we propose a novel receiver for multiple input single output channels. Such approaches are preferred in boosting the diversity within the channel, to combat fading. Our receiver performs a space time block coding technique by making use of a blind algorithm, which is the constant modulus algorithm. Being a blind receiver, no training data streams are required to identify and to equalize the frequency selective communication channel. Different from the state-of-the-art techniques in the literature proposed for the channels with transmit diversity, the channel estimation and channel equalization are implemented all in one receiver without any need for an extra step to perform any one of these two. Furthermore, the receiver was d...
Linear block codes in the complex field can be applied in spatial and/or temporal diversity receiver...
The paper addresses the blind equalization problem of spread spectrum modulations in the presence of...
Abstract — In this paper we have studied channel models (flat fading and frequency selective fading ...
Space-Time Block Coding (STBC) and a number of derivative techniques have been developed to maximise...
Space-Time Block Coding (STBC) and a number of derivative techniques have been developed to maximise...
Space-Time Block Coding (STBC) and a number of derivative techniques have been developed to maximise...
Space-Time Block Coding (STBC) and a number of derivative techniques have been developed to maximise...
Space-Time Block Coding (STBC) and a number of derivative techniques have been developed to maximise...
This paper deals with blind equalization of mobile channels, which are either frequency-selective or...
This paper deals with blind equalization of mobile channels, which are either frequency-selective or...
Spatial, temporal, and frequency diversity structures are analyzed to address the blind equalization...
This paper proposes a multi-dimensional matched filtering technique for spatial diversity receivers....
Linear block codes in the complex field can be applied in spatial and/or temporal diversity receiver...
In this thesis the problem of blind equalisation of stationary and fading mobile channels is investi...
Linear block codes can be applied in spatial and/or temporal diversity receivers in order to develop...
Linear block codes in the complex field can be applied in spatial and/or temporal diversity receiver...
The paper addresses the blind equalization problem of spread spectrum modulations in the presence of...
Abstract — In this paper we have studied channel models (flat fading and frequency selective fading ...
Space-Time Block Coding (STBC) and a number of derivative techniques have been developed to maximise...
Space-Time Block Coding (STBC) and a number of derivative techniques have been developed to maximise...
Space-Time Block Coding (STBC) and a number of derivative techniques have been developed to maximise...
Space-Time Block Coding (STBC) and a number of derivative techniques have been developed to maximise...
Space-Time Block Coding (STBC) and a number of derivative techniques have been developed to maximise...
This paper deals with blind equalization of mobile channels, which are either frequency-selective or...
This paper deals with blind equalization of mobile channels, which are either frequency-selective or...
Spatial, temporal, and frequency diversity structures are analyzed to address the blind equalization...
This paper proposes a multi-dimensional matched filtering technique for spatial diversity receivers....
Linear block codes in the complex field can be applied in spatial and/or temporal diversity receiver...
In this thesis the problem of blind equalisation of stationary and fading mobile channels is investi...
Linear block codes can be applied in spatial and/or temporal diversity receivers in order to develop...
Linear block codes in the complex field can be applied in spatial and/or temporal diversity receiver...
The paper addresses the blind equalization problem of spread spectrum modulations in the presence of...
Abstract — In this paper we have studied channel models (flat fading and frequency selective fading ...