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A Non-Coherent DPSK Data Receiver With Interference Cancellation for Dual-Band Transcutaneous Telemetries

机译:具有双频经皮遥测技术的干扰消除的非相干DPSK数据接收器

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摘要

A dual-band telemetry, which has different carrier frequencies for power and data signals, is used to maximize both power transfer efficiency and data rate for transcutaneous implants. However, in such a system, the power signal interferes with the data transmission due to the multiple magnetic couplings paths within the inductive coils. Since the power level of the transmitted power signal is significantly larger than that of the data signal, it usually requires a high-order filter to suppress the interference. This paper presents a non-coherent DPSK receiver without a high-order filter that is robust to the interference caused by the power carrier signal. The proposed scheme uses differential demodulation in the analog domain to cancel the interference signal for a dual-band configuration. The data demodulation also uses subsampling to avoid carrier synchronization circuits such as PLLs. The experimental results show that the demodulator can recover 1 and 2 Mb/s data rates at a 20 MHz carrier frequency, and it is able to cancel an interference signal that is 12 dB larger than the data signal without using complex filters. The demodulator is fabricated in a 0.35 mum CMOS process, with a power consumption of 6.2 mW and an active die area of 2.6times1.7mm2.
机译:具有针对功率和数据信号的不同载波频率的双频遥测技术被用于最大化经皮植入物的功率传输效率和数据速率。然而,在这样的系统中,由于感应线圈内的多个磁耦合路径,所以功率信号干扰了数据传输。由于发射的功率信号的功率电平明显大于数据信号的功率电平,因此通常需要一个高阶滤波器来抑制干扰。本文提出了一种不带高阶滤波器的非相干DPSK接收机,该接收机对由载波信号引起的干扰具有鲁棒性。所提出的方案在模拟域中使用差分解调来消除双频配置的干扰信号。数据解调还使用子采样来避免载波同步电路(例如PLL)。实验结果表明,该解调器可以在20 MHz的载波频率下恢复1和2 Mb / s的数据速率,并且可以消除比数据信号大12 dB的干扰信号,而无需使用复杂的滤波器。该解调器采用0.35微米CMOS工艺制造,功耗为6.2 mW,有源管芯面积为2.6×1.7mm2。

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