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A study and loss modeling of rf to dc converter / Nor 'Adilah Bt Mohd Naim

A study and loss modeling of rf to dc converter_Nor 'Adilah Bt Mohd Naim_E3_2010_875003539_00003084229_NI
Sensor pasif tanpa bateri adalah sebagai bahagian asas untuk litar frekuensi radio dalam sensor, litar pembetul digunakan untuk menukar pasangan pembawa gelombang electromagnet arus ulang-alik kepada voltan arus terus dan menyalurkan sumber kuasa untuk keseluruhan bahagian litar sensor. Pemancar frekuensi radio memancarkan tenaga yang mencukupi untuk meningkatkan kuasa sensor pada suatu jarak yang jauh. Walaubagaimanapun, pembetul mempunyai jumlah kuasa yang terhad yang boleh dipancarkan dan kehilangan jumlah jarak berdasarkan kepada perambatan electromagnet. Terdapat hanya sedikit jumlah kuasa yang tiba di sensor. Oleh itu, penghasilan kuasa litar mestilah memaksimumkan operasi jarak dengan menukarkan kuasa frekuensi radio yang terhad kepada kuasa arus terus dengan voltan yang mencukupi untuk mengaktifkan sensor. Permulaan rekabentuk pembetul adalah berdasarkan kepada pengatur berombak penuh dan dimajukan ke litar lata berkembar. Beberapa simulasi dilakukan dengan menggunakan pengaturcara ‘Multisim’ semasa merekabentuk pembetul. Pembetul berfrekuensi tinggi direkabentuk menggunakan susun atur ‘Eagle’ dan susun atur akan dibina. Selain itu, litar lain juga diperlukan iaitu papan pembekal kepada antenna. Pengaturcara ‘Computer Simulation Technology’ (CST) digunakan untuk melukis lakaran papan pembekal antenna bagi mendapatkan rekaan lukisan susun atur. Beberapa kiraan dilakukan semasa mereka pengawal atur voltan untuk menentukan nilai perintang yang akan digunakan. Apabila papan litar siap di bina, pengukuran di mulakan. Bahagian pengukuran termasuk penghantar dan penerima antenna, pembetul dan pengawal atur voltan. Daripada pengukuran, kedua-dua antenna berfungsi dengan baik dalam julat ‘Ultra High Frequency’ (UHF) manakala pengawal atur voltan berfungsi dalam keadaan bersendiri dengan keluaran ialah 3.489 V. Frekuensi minimum bagi antenna Ceramik ialah 725MHz manakala antenna LPRS ialah 624 MHz. Untuk bahagian pembetul, ia berfungsi tetapi keluaran yang dikehendaki tidak dapat di buktikan disebabkan oleh beberapa kehilangan kecekapan seperti ketidaksepadanan rintangan, kehilangan jumlah jarak, voltan ambangan dan kesensitiviti diod Schottky dan kehilangan dalam litar. Ini dapat dibuktikan apabila membezakan kuasa masukan (25 dBm = 316 mW) dengan kuasa keluaran pada pembetul (25 dBm = 316 mW). Apabila pembetul disambungkan dengan pengawalatur voltan, keluaran adalah kurang daripada 1.8 V disebabkan oleh masalah kesan bebanan. Selepas mengenalpasti sebab-sebab kesan bebanan, ujian telah dilakukan bagi mengesahkan masalah tersebut. Keputusan ujian menunjukkan kesan bebanan berlaku ketika pengabungan pembetul dan pengawalatur voltan. _____________________________________________________________________________________ Sensors without battery are one of the essential requirements in passive sensor. A rectifier circuit is used to convert the coupled AC electro-magnetic waveforms to a DC voltage and serve as a power supply for the rest parts of the sensor circuits. The RF transmitter transmits sufficient energy to power up the sensor at large distances. However, the rectifier output is limited on the amount of power that can be transmitted by transmitter and the path loss associated with electromagnetic propagation. Apparently, there is a little power that reaches the sensor. Therefore, the power harvesting circuit design must maximize the operating distance in order to activate the sensor by converting the limited incoming RF power to DC power with a sufficient voltage. The initial design of the rectifier was based on a full-wave regulator voltage doubler and later modified to the cascade doubler circuit. Some simulations are done by using Multisim simulation tools during the design of the rectifier. The high frequency rectifier has been designed using Eagle layout tools and the layout has been fabricated. There are another designs needed in this project which is feeding board of antenna. Computer Simulation Technology (CST) software was used to draw the schematic of feeding board in order to get the layout drawing for the design. Some calculations are performed during MAX757 design to determine the value of resistor that should be used. When the circuit board has been fabricated measurement part started. Measurement part includes of transmitter and receiver antenna, rectifier and voltage regulator. From measurement, both antennas working perfectly in the range of UHF and the voltage regulator is working in stand alone with the output is 3.489 V. The minimum operating for Ceramic antenna is 725 MHz while LPRS antenna is 624 MHz. For the rectifier part, it was working but the desired output cannot be obtained due to some loss efficiency such as impedance mismatch, path loss, threshold voltage and sensitivity of Schottky diode and losses in the circuit. It is obtained when comparing the input power (25 dBm = 316 mW) with the output power of rectifier (1.2V x 0.012μA = 0.144 μW). When the rectifier connected with voltage regulator, the output is lower than 1.8 V due to the loading effect problem. After taking note the causes of loading effect, a test is done to verify the problem. The test result shows the loading effect occur with the combination of rectifier and voltage regulator.
Contributor(s):
Nor 'Adilah Mohd Naim - Author
Primary Item Type:
Final Year Project
Identifiers:
Barcode : 00003084229
Accession Number : 875003539
Language:
English
Subject Keywords:
rectifier circuit ; electro-magnetic waveforms ; fabricated;
First presented to the public:
4/1/2010
Original Publication Date:
3/21/2018
Previously Published By:
Universiti Sains Malaysia
Place Of Publication:
School of Electrical & Electronic Engineering
Citation:
Extents:
Number of Pages - 84
License Grantor / Date Granted:
  / ( View License )
Date Deposited
2018-03-21 16:06:05.884
Date Last Updated
2019-01-07 11:24:32.9118
Submitter:
Nor Hayati Ismail

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