In this paper, sphere decoding algorithms are proposed for both hard detection and soft processing in multi-input multi-output (MIMO) systems. Both algorithms are based on the complex tree structure to reduce the complexity of searching the unique minimum Euclidean distance and multiple Euclidean distances, and obtain the corresponding transmit symbol vectors. The novel complex hard sphere decoder for MIMO detection is presented first, and then the soft processing of a novel sphere decoding algorithm for list generation is discussed. The performance and complexity of the proposed techniques are demonstrated via simulations in terms of bit error rate (BER), the number of nodes accessed and floating-point operations (FLOPS)
International audienceTo reduce the decoding complexity of linearly precoded MIMO systems, the spher...
Abstract — Sphere Decoding (SD) algorithms have been shown to provide maximum likelihood (ML) detect...
Fixed-complexity sphere decoder (FSD) is one of the most promising techniques for the implementation...
AbstractIt has been shown in recent years that the iterative decoding techniques, improve performanc...
AbstractIt has been shown in recent years that the iterative decoding techniques, improve performanc...
The complex sphere decoding algorithm has optimal bit error ratio performance for uncoded multiple-i...
The sphere decoder (SD) is an attractive low-complexity alternative to maximum likelihood (ML) detec...
Fixed-complexity sphere decoder (FSD) is one of the most promising techniques for the implementation...
Abstract—Multiple-input multiple-output (MIMO) detection algorithms providing soft information for a...
Multiple Input Multiple Output (MIMO) systems are recognized as a key enabling technology in high pe...
Multiple Input Multiple Output (MIMO) systems are recognized as a key enabling technology in high pe...
Multiple Input Multiple Output (MIMO) systems are recognized as a key enabling technology in high pe...
Multiple Input Multiple Output (MIMO) systems are recognized as a key enabling technology in high pe...
In sphere decoding techniques, it was seen that the generalized sphere decoder algorithms have been ...
International audienceTo reduce the decoding complexity of linearly precoded MIMO systems, the spher...
International audienceTo reduce the decoding complexity of linearly precoded MIMO systems, the spher...
Abstract — Sphere Decoding (SD) algorithms have been shown to provide maximum likelihood (ML) detect...
Fixed-complexity sphere decoder (FSD) is one of the most promising techniques for the implementation...
AbstractIt has been shown in recent years that the iterative decoding techniques, improve performanc...
AbstractIt has been shown in recent years that the iterative decoding techniques, improve performanc...
The complex sphere decoding algorithm has optimal bit error ratio performance for uncoded multiple-i...
The sphere decoder (SD) is an attractive low-complexity alternative to maximum likelihood (ML) detec...
Fixed-complexity sphere decoder (FSD) is one of the most promising techniques for the implementation...
Abstract—Multiple-input multiple-output (MIMO) detection algorithms providing soft information for a...
Multiple Input Multiple Output (MIMO) systems are recognized as a key enabling technology in high pe...
Multiple Input Multiple Output (MIMO) systems are recognized as a key enabling technology in high pe...
Multiple Input Multiple Output (MIMO) systems are recognized as a key enabling technology in high pe...
Multiple Input Multiple Output (MIMO) systems are recognized as a key enabling technology in high pe...
In sphere decoding techniques, it was seen that the generalized sphere decoder algorithms have been ...
International audienceTo reduce the decoding complexity of linearly precoded MIMO systems, the spher...
International audienceTo reduce the decoding complexity of linearly precoded MIMO systems, the spher...
Abstract — Sphere Decoding (SD) algorithms have been shown to provide maximum likelihood (ML) detect...
Fixed-complexity sphere decoder (FSD) is one of the most promising techniques for the implementation...