Multi Scale modeling and intricate study of MEMS based elements in RFID systems

Rohit Pathak, Satyadhar Joshi, Pawan Kotak
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引用次数: 11

Abstract

In this paper we have implemented some of the complex modeling aspects such as Multi Scale modeling, MATLAB, Sugar based modeling and have shown the complexities involved in the device modeling of Nano RFID systems taking example of MEMS models. We have shown the modeling and simulation and demonstrated some novel ideas and library development for Nano RFID and its extension for MEMS devices. Reliability and packaging still remains one the major hindrances in practical implementation of Nano RFID based devices and multi scale analysis also can be used in that area. Therefore to work on it by modeling and simulation will play a very important role. Thus incorporating this we can design a Nano-RFID which can be used in areas like human implantation and complex banking applications. We have proposed modeling of RFID using the concept of multi scale modeling to accurately predict its properties for MEMS specific applications. Also we give the modeling of MEMS devices that are proposed recently that can see possible application in RFID. RF MEMS has been matured and its devices are being successfully commercialized but taking it to limits of nano domains and integration with singly chip RFID needs a practical modeling approach which is being proposed. We have modeled 2 MEMS based transponder and shown the distribution for multiscale modeling for Nano RFID.
RFID系统中基于MEMS元件的多尺度建模与复杂研究
在本文中,我们实现了一些复杂的建模方面,如多尺度建模,MATLAB,基于Sugar的建模,并以MEMS模型为例展示了纳米RFID系统器件建模所涉及的复杂性。我们展示了建模和仿真,并展示了纳米RFID及其扩展到MEMS器件的一些新想法和库开发。可靠性和封装仍然是实际实施纳米RFID设备的主要障碍之一,多尺度分析也可用于该领域。因此,对其进行建模和仿真将起到非常重要的作用。因此,结合这一点,我们可以设计一种纳米rfid,可用于人体植入和复杂的银行应用等领域。我们提出使用多尺度建模的概念对RFID进行建模,以准确预测其在MEMS特定应用中的特性。此外,我们还给出了最近提出的MEMS器件的建模,这些器件可以在RFID中看到可能的应用。射频MEMS已经成熟,其器件正在成功商业化,但要使其达到纳米域的限制并与单芯片RFID集成,需要一种实用的建模方法。我们对2个基于MEMS的转发器进行了建模,并展示了纳米RFID多尺度建模的分布。
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