首页> 外文期刊>IEEE transactions on biomedical circuits and systems >Modulation Scheme Analysis for Low-Power Leadless Pacemaker Synchronization Based on Conductive Intracardiac Communication
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Modulation Scheme Analysis for Low-Power Leadless Pacemaker Synchronization Based on Conductive Intracardiac Communication

机译:基于传导心内通信的低功耗无导线起搏器同步调制方案分析

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Conductive intracardiac communication (CIC) has been demonstrated as a promising concept for the synchronization of multi-chamber leadless cardiac pacemakers (LLPMs). To meet the 2–5 $mu$W power budget of a LLPM, highly specialized CIC-transceivers, which make optimal use of the cardiac communication channel, need to be developed. However, a detailed investigation of the optimal communication parameters for CIC-based LLPM synchronization is missing so far. This work analyzes the intracardiac communication performance of two low-power modulation techniques, namely On-Off-Keying (OOK) and Manchester-encoded baseband transmission (BB-MAN), as a function of the transmitted bit-energy. The bit error rate (BER) of a prototype dual-chamber LLPM was determined both in simulation and in-vitro experiments on porcine hearts. A BER of 1e$-$4 was achieved with a median bit-energy in the range of 3-16 pJ (interquartile range: 4-15 pJ) for data rates from 75-500 kbps and a receiver input noise density of 7 nV/$sqrt{mathrm{mathbf {Hz}}}$. Both modulation schemes showed comparable performance, with BB-MAN having a slight bit-energy advantage (1-2 dB at 150-500 kbps) under equalized transceiver characteristics. This study demonstrates that reliable CIC-based LLPM synchronization is feasible at transmitted power levels $10 nW under realistic channel conditions and receiver noise performance. Therefore, modulation techniques such, as BB-MAN or OOK, are preferable over recently proposed alternatives, such as pulse position modulation or conductive impulse signaling, since they can be realized with fewer hardware resources and smaller bandwidth requirements. Ultimately, a baseband communication approach might be favored over OOK, due to the more efficient cardiac signal transmission and reduced transceiver complexity.
机译:传导心内通讯 (CIC) 已被证明是多腔无导线心脏起搏器 (LLPM) 同步的一个有前途的概念。为了满足LLPM的2-5 $mu$W功率预算,需要开发高度专业化的CIC收发器,以充分利用心脏通信通道。然而,到目前为止,还缺少对基于 CIC 的 LLPM 同步的最佳通信参数的详细研究。本文分析了两种低功耗调制技术,即开-关键控(OOK)和曼彻斯特编码基带传输(BB-MAN)的心内通信性能,作为传输比特能量的函数。原型双室LLPM的误码率(BER)是在模拟和猪心脏的体外实验中确定的。对于75-500 kbps的数据速率,中位数比特能量在3-16 pJ(四分位距:4-15 pJ)范围内,接收器输入噪声密度为7 nV/$sqrt{mathrm{mathbf {Hz}}}$,误码率为1e$-$4。两种调制方案都显示出相当的性能,BB-MAN在均衡收发器特性下具有轻微的比特能量优势(150-500 kbps时为1-2 dB)。本研究表明,在实际信道条件和接收机噪声性能下,在发射功率电平 $< $10 nW 下,基于 CIC 的可靠 LLPM 同步是可行的。因此,BB-MAN或OOK等调制技术比最近提出的替代方案(如脉冲位置调制或传导脉冲信号)更可取,因为它们可以用更少的硬件资源和更小的带宽要求来实现。最终,基带通信方法可能比OOK更受青睐,因为它具有更高效的心脏信号传输和更低的收发器复杂性。

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