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A 6581-GHz Communication-Ranging VWB Transceiver for Secure Wireless Connectivit
本文提出了一种用于移动认证与位置验证的脉冲收发器架构,采用飞行时间测量方法抵御中继攻击。
65nm CMOS, 6.0 mW, -69 dBm sensitivity, 2.0 cm ranging accuracy, 20 ns demodulation latency
脉冲收发器飞行时间测量频率跳变超宽带非相干能量检测ΔΣ能量检测
▸创新点1:频率跳变超宽带脉冲生成(系统创新) - 采用频率跳变技术实现带宽高效的脉冲传输,通过动态切换频段增强链路裕度,支持400 MHz信道带宽和可调谐保护间隔,显著提升抗干扰能力和频谱利用率。
▸创新点2:非相干能量检测接收器(电路创新) - 设计低功耗、低延迟的非相干能量检测架构,结合自动能量积分窗口跟踪技术,实现20 ns超低解调延迟和-69 dBm高灵敏度,适用于TOF测距和PPM同步。
▸创新点3:ΔΣ能量检测方法(方法创新) - 提出1位数字输出的ΔΣ能量转换方案,无需异步边沿检测即可提取测距信息,简化电路复杂度,同时实现2.0 cm高精度测距。
▸创新点4:多信道可配置架构(系统创新) - 在6.5-8.1 GHz频段内实现3个可调谐信道,通过动态分配保护带宽优化多信道共存性能,满足移动认证场景下的灵活频谱需求。
Abstract
This article describes a pulse-based transceiver
architecture for mobile authentication with location verifica-
tion. A time-of-flight (TOF) mea surement method is employed
as a physical layer countermeasure against relay attack. For
bandwidth-efficient pulse transmission with enhanced link mar-
gin, frequency-hopping very-wideband (VWB) pulse generation
is used. A noncoherent energy detection receiver is designed for
TOF-based ranging to have demodulation with low power and
low latency. The positi