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Peak-to-Average Power Ratio in the Circuit Design of a 20MHz Bandwidth of a Wireless LAN IEEE 802.11n

机译:无线局域网IEEE 802.11n的20MHz带宽的电路设计中的峰均功率比

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An important aspect of the Wireless Local Area Network’s (WLAN) physical layer design is its Peak-to-Average Power Ratio (PAPR) that has an important role in the power amplifier’s linearity and efficiency. This paper analyses the PAPR of IEEE 802.11n standard which has some different packet formats for backward compatibility. PAPR calculation is limited to the Legacy and High Throughput (HT) formats of a 20MHz bandwidth. Calculation results show that a high probability for the maximum PAPR exists in the signal field rather than in the preamble or data fields. Furthermore, the maximum PAPR for the signal field of a Legacy format 802.11n is 29.3dB that appears when the data rate is 6Mbps and data length is 3846 octet. However, the maximum PAPR for the high throughput (HT) format is 35.6dB that is related to a data rate of 6.5Mbps and a data length of 32768 octets. Moreover, the PAPR of the HT-format is 3dB higher than the Legacy format for CCDF 10-2.
机译:无线局域网(WLAN)物理层设计的一个重要方面是其峰均功率比(PAPR),它对功率放大器的线性度和效率起着重要作用。本文分析了IEEE 802.11n标准的PAPR,该标准具有一些不同的数据包格式以实现向后兼容。 PAPR计算仅限于20MHz带宽的传统和高吞吐量(HT)格式。计算结果表明,最大PAPR的高概率存在于信号字段中,而不是在前同步码或数据字段中。此外,传统格式802.11n的信号字段的最大PAPR为29.3dB,当数据速率为6Mbps和数据长度为3846个八位位组时出现。但是,高吞吐量(HT)格式的最大PAPR为35.6dB,这与6.5Mbps的数据速率和32768个八位位组的数据长度有关。此外,HT格式的PAPR比CCDF 10-2的传统格式高3dB。

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