首页> 外国专利> JOINT PAPR REDUCTION AND RATE ADAPTIVE ULTRASONIC OFDM PHYSICAL LAYER FOR HIGH DATA RATE THROUGH-METAL COMMUNICATIONS

JOINT PAPR REDUCTION AND RATE ADAPTIVE ULTRASONIC OFDM PHYSICAL LAYER FOR HIGH DATA RATE THROUGH-METAL COMMUNICATIONS

机译:高数据速率全金属通信的联合PAPR降低和速率自适应超声OFDM物理层

摘要

A link adaptive orthogonal frequency-division multiplexed (OFDM) ultrasonic physical layer is provided that is capable of high data rate communication through metallic structures. The use of an adaptive OFDM subcarrier-based modulation technique mitigates the effects of severe frequency selective fading of the through-metal communication link and improves spectral efficiency by exploiting the slow-varying nature of the channel. To address the potential ill effects of peak-to-average power ratio (PAPR) and to make more efficient use of the power amplifiers in the system, the invention modifies and implements a symbol rotation and inversion-based PAPR reduction algorithm in the adaptive OFDM framework. This joint adaptive physical layer is capable of increasing data rates by roughly 220% in comparison to conventional narrowband techniques at average transmit powers of roughly 7 mW while constrained to a desired BER.
机译:提供了链路自适应正交频分复用(OFDM)超声物理层,其能够通过金属结构进行高数据速率通信。自适应基于OFDM子载波的调制技术的使用通过利用信道的慢速变化特性,减轻了金属穿透通信链路严重的频率选择性衰落的影响,并提高了频谱效率。为了解决峰均功率比(PAPR)的潜在不良影响并更有效地利用系统中的功率放大器,本发明在自适应OFDM中修改并实现了基于符号旋转和反转的PAPR降低算法。框架。与传统的窄带技术相比,该联合自适应物理层能够在大约7 mW的平均发射功率下将数据速率提高约220%,同时还限制在所需的BER内。

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