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Šenona kanāla ietilpības teorēma×Ortogonālā frekvenču multipleksēšana ar sadalītu nesēju (OFDM)×
NozareTelekomunikācijasTelekomunikācijas
SaimeProcess / pipelineProcess / pipeline
Izcelsmes gads19481971
AutorsClaude ShannonWeinstein and Ebert
Tipsfundamental theoretical boundmulticarrier modulation scheme
PirmavotsShannon, C. E. (1948). A mathematical theory of communication. Bell System Technical Journal, 27(3), 379-423. DOI ↗Weinstein, S. B., & Ebert, P. M. (1971). Data transmission by frequency-division multiplexing using the discrete Fourier transform. IEEE Transactions on Communication Technology, 19(5), 628-634. DOI ↗
Citi nosaukumichannel capacity, information theory boundmulticarrier modulation
Saistītās55
KopsavilkumsShannon's channel capacity theorem, published in 1948, establishes the maximum rate at which information can be reliably transmitted over a noisy channel. Expressed as C = B log2(1 + S/N) for additive white Gaussian noise (AWGN), it is a fundamental bound in information theory and communications engineering. Shannon proved that reliable communication is possible at any rate below capacity, and impossible above it. This theorem underpins the design of all modern communication systems and motivates coding theory, modulation, and signal processing techniques.OFDM is a multicarrier modulation technique that divides a wideband channel into many narrowband orthogonal subcarriers. Introduced by Weinstein and Ebert in 1971, it exploits the duality between time and frequency domains to efficiently use spectrum while mitigating intersymbol interference in frequency-selective channels. OFDM is now the standard for high-speed wireless systems including WiFi, cellular LTE, and digital broadcasting.
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ScholarGateSalīdzināt metodes: Shannon Capacity · OFDM. Izgūts 2026-06-19 no https://scholargate.app/lv/compare