ScholarGate
助手

方法对比

并排查看您选择的方法;存在差异的行会高亮显示。

ZF/MMSE Equalization×正交频分复用 (OFDM)×香农信道容量定理×
领域电信电信电信
方法族Process / pipelineProcess / pipelineProcess / pipeline
起源年份197419711948
提出者Saleh Mansour and Paul ZervosWeinstein and EbertClaude Shannon
类型linear equalization algorithmmulticarrier modulation schemefundamental theoretical bound
开创性文献Proakis, J. G. (2001). Digital Communications (4th ed.). McGraw-Hill. link ↗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 ↗Shannon, C. E. (1948). A mathematical theory of communication. Bell System Technical Journal, 27(3), 379-423. DOI ↗
别名channel equalization, interference cancellationmulticarrier modulationchannel capacity, information theory bound
相关555
摘要Zero-Forcing (ZF) and Minimum Mean-Square Error (MMSE) equalization are fundamental linear receiver algorithms for combating intersymbol interference in dispersive channels. Developed in the context of data transmission theory, these methods form the basis of modern channel equalization in wireless and wired systems. While ZF aggressively cancels interference, MMSE balances interference suppression with noise enhancement, making it the optimal linear solution under Gaussian noise.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.Shannon'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.
ScholarGate数据集
  1. v1
  2. 2 来源
  3. PUBLISHED
  1. v1
  2. 2 来源
  3. PUBLISHED
  1. v1
  2. 2 来源
  3. PUBLISHED

前往搜索 下载幻灯片

ScholarGate方法对比: ZF/MMSE Equalization · OFDM · Shannon Capacity. 于 2026-06-18 检索自 https://scholargate.app/zh/compare