We study the design of spectrally efficient fiber-optical communication systems based on different spatially coupled (SC) forward error correction (FEC) schemes. In particular, we optimize the allocation of the coded bits from the FEC encoder to the modulation bits of the signal constellation. Two SC code classes are considered. The codes in the first class are protograph-based low-density parity-check (LDPC) codes which are decoded using iterative soft-decision decoding. The codes in the second class are generalized LDPC codes which are decoded using iterative hard-decision decoding. For both code classes, the bit allocation is optimized for the terminated and tailbiting SC cases based on a density evolution analysis. An optimized bit allo...
Forward error correction is an essential technique required in almost all communication systems to g...
Abstract—A forward-error correction)FEC) scheme based on low-density parity check (LDPC) codes and i...
In this paper we consider the generalization of binary spatially coupled low-density parity-check (S...
We study the design of spectrally efficient fiber-optical communication systems based on different s...
We study the design of spectrally efficient fiber- optical communication systems based on different ...
Abstract—We study the design of spectrally efficient fiber-optical communication systems based on di...
The theme of this thesis is the analysis and design of error-correcting codes that are suitable for ...
Soft forward error correction with higher-order modulations is often implemented in practice via the...
Soft forward error correction with higher-order modulations is often implemented in practice via the...
We optimize the allocation of coded bits to modulation bits for spatially coupled low-density parity...
We optimize the allocation of coded bits to modulation bits for spatially coupled low-density parity...
Motivated by the realization that even the enormous bandwidth available in an optical fiber is finit...
A novel low-complexity architecture for forward error correction (FEC) in optical communication is p...
In many practical communication systems, one binary encoder/decoder pair is used to communicate over...
Abstract—We show how the iterative decoding threshold of tailbiting spatially coupled (SC) low-dens...
Forward error correction is an essential technique required in almost all communication systems to g...
Abstract—A forward-error correction)FEC) scheme based on low-density parity check (LDPC) codes and i...
In this paper we consider the generalization of binary spatially coupled low-density parity-check (S...
We study the design of spectrally efficient fiber-optical communication systems based on different s...
We study the design of spectrally efficient fiber- optical communication systems based on different ...
Abstract—We study the design of spectrally efficient fiber-optical communication systems based on di...
The theme of this thesis is the analysis and design of error-correcting codes that are suitable for ...
Soft forward error correction with higher-order modulations is often implemented in practice via the...
Soft forward error correction with higher-order modulations is often implemented in practice via the...
We optimize the allocation of coded bits to modulation bits for spatially coupled low-density parity...
We optimize the allocation of coded bits to modulation bits for spatially coupled low-density parity...
Motivated by the realization that even the enormous bandwidth available in an optical fiber is finit...
A novel low-complexity architecture for forward error correction (FEC) in optical communication is p...
In many practical communication systems, one binary encoder/decoder pair is used to communicate over...
Abstract—We show how the iterative decoding threshold of tailbiting spatially coupled (SC) low-dens...
Forward error correction is an essential technique required in almost all communication systems to g...
Abstract—A forward-error correction)FEC) scheme based on low-density parity check (LDPC) codes and i...
In this paper we consider the generalization of binary spatially coupled low-density parity-check (S...