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An enhancement in data transmission in biomedical implantable microsystems: Uni-pulse harmonic modulation

机译:生物医学植入式微系统中数据传输的增强:单脉冲谐波调制

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To have the desired performance, the neural recording Microsystems must be able to transmit the recorded data out of the body with the highest data transmission rate and the least bit error possible. For data transmission from the biomedical implanted Microsystems out of the body using the Pulse Harmonic Modulation, two narrow pulses with the appropriate timing are employed so as to reduce the intersymbol interference and increase the data transmission rate. In the structure proposed in this paper, instead of generating two narrow pulses, one wider pulse is employed, in such a way that the oscillations are generated corresponding to the positive edge and damped corresponding to the negative edge. The possibility of 33.3 Mbps data transmission rate and decrease in power consumption and chip area are amongst the advantages of this method. Moreover, in the newly presented method, Data Rate to Carrier Frequency (DRCF) Ratio is increased from 30 percent in the previous literature to 50 percent. This structure is simulated in 0.18 μm technology using ADS software.
机译:为了具有理想的性能,神经记录微系统必须能够以最高的数据传输速率和最小的位错误将记录的数据传输到体外。为了使用脉冲谐波调制从生物医学植入的微系统向外传输数据,采用了两个具有适当定时的窄脉冲,以减少符号间干扰并提高数据传输速率。在本文提出的结构中,不是产生两个窄脉冲,而是使用一个较宽的脉冲,这样使得产生了与正边缘相对应的振荡而与负边缘相对应的阻尼。这种方法的优点包括33.3 Mbps数据传输速率的可能性以及功耗和芯片面积的减小。此外,在新提出的方法中,数据速率与载波频率(DRCF)的比例从以前的文献中的30%增加到了50%。使用ADS软件以0.18μm技术对该结构进行了仿真。

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