Directional modulation (DM) can be achieved based on uniform linear arrays (ULAs), where the maximum half wavelength spacing is needed to avoid spatial aliasing. To exploit the degrees of freedom (DOFs) in the spatial domain, sparse arrays can be employed for more effective DM design. In this paper, the problem of antenna location optimisation for sparse arrays in the context of DM is addressed for the first time, where compressive sensing based formulations are proposed employing the group sparsity concept. Design examples are provided to verify the effectiveness of the proposed designs
The Compressive Sensing (CS) technique, first introduced in the field of image processing, is nowada...
Reduced-control antenna arrays reduce the number of controls required for beamforming while maintain...
This thesis focuses on sparse array architectures for the next generation of wireless communication,...
Directional modulation (DM) can be achieved based on uniform linear arrays where the maximum spacing...
Directional modulation (DM) has been applied to sparse linear antenna arrays to increase security of...
Directional modulation (DM) has been developed based on narrowband antenna arrays, which can form th...
In sparse arrays, the randomness of antenna locations avoids the introduction of grating lobes, whil...
The design of sparse spatially stretched tripole arrays is an important but also challenging task a...
As compared to single-element antenna, antenna array can not only achieve better radiation performan...
Sparse wideband array design for sensor location optimization is highly nonlinear and it is traditio...
Directional modulation (DM) has been applied to linear antenna arrays to increase security of signal...
Sparse wideband sensor array design for sensor location optimisation is highly nonlinear and it is t...
This paper considers the problem of designing sparse linear tripole arrays. In such arrays at each a...
Traditional directional modulation (DM) designs are normally based on a single phased array, with th...
The design of sparse spatially stretched tripole arrays is an important but also challenging task an...
The Compressive Sensing (CS) technique, first introduced in the field of image processing, is nowada...
Reduced-control antenna arrays reduce the number of controls required for beamforming while maintain...
This thesis focuses on sparse array architectures for the next generation of wireless communication,...
Directional modulation (DM) can be achieved based on uniform linear arrays where the maximum spacing...
Directional modulation (DM) has been applied to sparse linear antenna arrays to increase security of...
Directional modulation (DM) has been developed based on narrowband antenna arrays, which can form th...
In sparse arrays, the randomness of antenna locations avoids the introduction of grating lobes, whil...
The design of sparse spatially stretched tripole arrays is an important but also challenging task a...
As compared to single-element antenna, antenna array can not only achieve better radiation performan...
Sparse wideband array design for sensor location optimization is highly nonlinear and it is traditio...
Directional modulation (DM) has been applied to linear antenna arrays to increase security of signal...
Sparse wideband sensor array design for sensor location optimisation is highly nonlinear and it is t...
This paper considers the problem of designing sparse linear tripole arrays. In such arrays at each a...
Traditional directional modulation (DM) designs are normally based on a single phased array, with th...
The design of sparse spatially stretched tripole arrays is an important but also challenging task an...
The Compressive Sensing (CS) technique, first introduced in the field of image processing, is nowada...
Reduced-control antenna arrays reduce the number of controls required for beamforming while maintain...
This thesis focuses on sparse array architectures for the next generation of wireless communication,...