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Item type:Item, Path Loss Analysis of RFID Channles Measurement in Library with Metal Bookshelves(2023-01-01) ;Supramongkonset, JatupornPromwong, SathapornThe radio frequency identification (RFID) library management system has gained popularity in libraries due to its convenience and improved efficiency. Accurate channel modeling is crucial for predicting system performance and received power. This paper focuses on modeling the channel characteristics of metal bookshelves in RFID library management systems operating at a frequency of 2.45 GHz. We employ microstrip patch antennas as both transmitter (Tx) and receiver (Rx) antennas, considering both vertical-vertical (V-V) and horizontal-horizontal (H-H) polarizations. Linear regression analysis models the path loss characteristic, allowing us to establish a mathematical relationship that accurately represents the path loss between the antennas. Furthermore, statistical models based on cumulative distribution function (CDF) are employed to characterize multipath fading, providing insights into the distribution of signal variations caused by multipath propagation. The experimental results indicate that metal bookshelves with V-V and H-H polarizations are suitable for the performance of RFID library management systems. The path loss models generated through linear regression analysis enable accurate prediction of received power, while the statistical models based on CDF contribute to a comprehensive understanding of multipath fading and its impact on system performance. This study provides valuable insights for librarians and system designers seeking to implement efficient and reliable RFID technology in library management systems. By examining and modeling the channel characteristics of metal bookshelves, our findings support the optimal use of V-V and H-H polarizations, ensuring the effective operation of RFID systems in library environments. - Some of the metrics are blocked by yourconsent settings
Item type:Item, Evaluation of RFID Propagation Channels with Wooden and Metal Bookshelves Based on Measurement Data(2023-01-01) ;Supramongkonset, Jatuporn ;Rattasuwan, KotchakornPromwong, SathapornThis paper studies the propagation that occurs in Radio Frequency Identification (RFID). The purpose of this study is to establish a model to study the energy and efficiency of the system. Experimenting with two model of bookshelf models. Wood and metal bookshelves are used as models to measure data. Microstrip antenna are used as a transmitter (Tx antenna) and a receiver (Rx antenna) at frequency of 2.45 GHz channels in co-polarization. From the data of this measurement result, we can observe the tendency of path loss arising from the change in distance and the effect of the signal in both wood and metal bookshelf by the contouring of the path loss signal. The results showed that the co-polarization had higher path loss at increased distances. By path loss modeling using contour method it was found that at measuring point near the edge of the bookshelf There is path loss in the edge of metal bookshelf higher than the edges of wooden bookshelf. - Some of the metrics are blocked by yourconsent settings
Item type:Item, Quantitative Experimental Evaluation of RFID Propagation Loss with Wooden and Metal Bookshelves(2023-01-01) ;Supramongkonset, JatupornPromwong, SathapornRadio frequency identification (RFID) is wireless multimedia applications for bookshelves experimental system to replace the barcodes media technology. The RFID propagation channel characteristics and environment effect should be known. In this study to evaluate the RFID propagation loss with wooden and metal bookshelves based on data of measurement. Experimental study evaluation of RFID multimedia system with bookshelves is using vector network analyzer (VNA) and the microstrip patch antennas of transmitter (Tx) and receiver (Rx) antennas at a frequency range from 2.4 GHz to 2.5 GHz. The results of experiment are considering the path loss, received signal strength (RSS), and comparison the path loss differences with cumulative distribution function (CDF) to evaluated, respectively. In this research work are necessary for RFID antenna design and evaluate the RFID multimedia systems. - Some of the metrics are blocked by yourconsent settings
Item type:Item, Polarimetric transmission loss of RFID antenna at 2.4 GHz for short range systems(2009-12-01) ;Duangsuwan, SarunPromwong, SathapornRadio Frequency Identification (RFID), The operated in 2.4 GHz RFID systems is energy and data transmission using propagating radio signal (E-field transmission). This is exactly the same principle as that used in long-range radio communication systems. The reader's antenna generates a propagating radio wave use far-field communication, which is received by the antenna in the tag. In this paper the microstrip antennas used both for reader antenna and tag antenna and simple patch antenna of this type radiates a linearly polarized wave. We investigated and analyzed to the vertical and horizontal polarization arranges in RFID communications link. Furthermore, the power delay profile and bit error rate shows. This technique, can studies sufficiently researches and designed the antennas independent. ©2009 IEEE. - Some of the metrics are blocked by yourconsent settings
Item type:Item, Indoor measurement and modeling of RFID transmission loss at 5.8 GHz with human body(2008-10-06) ;Malison, Phissanu ;Promwong, Sathaporn ;Sukutamatanti, NikornBanpotjit, ThanawatThe radio frequency identification technology in frequency band at 5.8 GHz is becoming the important part of a high-speed data rate in the fields of narrow band application radio wave and in short range wireless communication system. According, the best performance of effects with human body in an indoor environment for the wireless body area networks are necessary to study. This paper, an experimental study and analyze of effects in the radio frequency identification performance of transmission signal with human body. Furthermore, we considers the characteristics of human body in each distances by using the vector network analyzer, and the microstrip antenna for both transmitter and receiver antenns. Therefore, this experiment will be benefit for researching and developing communications system of RFID propagation channel with wireless body area networks. ©2008 IEEE.
