LDPC-coded orbital angular momentum (OAM) modulation for free-space optical communication
Модуляция с орбитальным угловым моментом (OAM) и LDPC-кодированием для оптической связи в свободном пространстве
2010-11-10
SCID: 54.1/kgev5uwf
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Atmospheric turbulenceFree-space optical communicationLDPC-coded OAM modulationMaximum-ratio combiningNonbinary LDPC coding
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Abstract (AI)
An orbital angular momentum (OAM) based LDPC-coded modulation scheme suitable for use in FSO communication is proposed. We demonstrate that the proposed scheme can operate under strong atmospheric turbulence regime and enable 100 Gb/s optical transmission while employing 10 Gb/s components. Both binary and nonbinary LDPC-coded OAM modulations are studied. In addition to providing better BER performance, the nonbinary LDPC-coded modulation reduces overall decoder complexity and latency. The nonbinary LDPC-coded OAM modulation provides a net coding gain of 9.3 dB at the BER of 10(-8). The maximum-ratio combining scheme outperforms the corresponding equal-gain combining scheme by almost 2.5 dB.
Key Findings
1
An LDPC-coded orbital angular momentum modulation scheme is proposed for free-space optical communication under strong atmospheric turbulence.
2
Both binary and nonbinary LDPC-coded OAM modulations are investigated, with nonbinary coding improving BER performance while reducing decoder complexity and latency.
3
Maximum-ratio combining outperforms equal-gain combining by nearly 2.5 dB.
4
Nonbinary LDPC-coded OAM modulation achieves a 9.3 dB net coding gain at a BER of 10^-8.
5
The proposed scheme enables 100 Gb/s optical transmission using 10 Gb/s components.
Research Object
LDPC-coded orbital angular momentum (OAM) modulation for free-space optical communication under strong atmospheric turbulence
Research Subject
Transmission performance, bit-error rate, coding gain, decoder complexity and latency of binary and nonbinary LDPC-coded OAM modulation, including combining-scheme effects
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2010-11-10
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