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Nonreciprocal Radio System Calibration for Propagation-Based Key Generation

机译:基于传播的密钥生成的不可逆无线电系统校准

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摘要

Propagation-based secret key generation (SKG) is a physical layer method for establishing encryption keys based on two radios observing a reciprocal propagation channel. However, nonreciprocal contributions to the channel introduced by the radio circuitry significantly degrade the ability to reliably generate keys using such methods, necessitating the development of calibration methods for removing the impact of channel nonreciprocity. This paper uses a total least squares (TLS) algorithm coupled with a detailed model of the multiple-input multiple-output radio frequency circuitry and propagation for the radio system to achieve such a calibration. Simulations show that the method is highly effective in removing the impact of nonreciprocal circuit contributions over a range of operational parameters.
机译:基于传播的秘密密钥生成(SKG)是一种物理层方法,用于基于观察双向传播信道的两个无线电来建立加密密钥。然而,由无线电电路引入的对信道的不可逆的贡献显着降低了使用这种方法可靠地生成密钥的能力,因此需要开发校准方法来消除信道不可逆的影响。本文使用总最小二乘(TLS)算法,结合多输入多输出射频电路的详细模型和无线电系统的传播,以实现这种校准。仿真表明,该方法在消除一系列操作参数范围内的不可逆电路影响方面非常有效。

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