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Circuit/system design space characterization of EER-based transmitter for 802.11a WLAN standard

机译:用于802.11a WLaN标准的基于EER的发射机的电路/系统设计空间表征

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摘要

Due to the increase of required bandwidth, the newer generation of communication systems uses spectrum-efficient digital modulations that involve non-constant envelope RF signals. A technique that potentially can concurrently provide high efficiency and linearity is the Envelope Elimination and Restoration (EER) transmitter architecture which is based on\udthe decomposition of the transmitted signal in a broadband baseband envelope (processed by an envelope-tracking switching power converter) and a narrowband phase-modulated signal (processed by a class-E switch-mode RFPA) and the subsequent restoration (through wideband adaptive RF PA supply). In this work, a behavioral system-level characterization of how circuitlevel effects (namely limited bandwidth and switching effects) affect the overall communication system performance metrics (characterized by spectra, eye diagrams, signal constellations,\udEVM and BER) of a 802.11a WLAN system is presented.
机译:由于所需带宽的增加,新一代通信系统使用了频谱效率高的数字调制,其中涉及非恒定包络RF信号。可以同时提供高效率和线性度的技术是包络消除和恢复(EER)发射机架构,该架构基于宽带基带包络中的发射信号分解(由包络跟踪开关功率转换器处理)和窄带相位调制信号(由E类开关模式RFPA处理)和随后的恢复(通过宽带自适应RF PA电源)。在这项工作中,行为的系统级特征描述了电路级效应(即有限的带宽和开关效应)如何影响802.11a WLAN的整体通信系统性能指标(由频谱,眼图,信号星座,\ udEVM和BER表征)系统介绍。

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