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Cites:

Information Journal Paper

Title

DESIGN OF BAND-PASS FILTER BASED ON ACTIVE CAPACITANCE CIRCUIT AND TUNABILITY WITH NEURAL NETWORK

Pages

  63-69

Abstract

 In this research, ACTIVE CAPACITANCE CIRCUIT and the feature of NEGATIVE RESISTANCE are analysed in details. Also, a new ACTIVE FILTER is presented based on ACTIVE CAPACITANCE CIRCUIT. For simulations, we used MATLAB and Advanced Design System (ADS). proposed ACTIVE FILTER (RF) is a narrow band filter. The results of simulation shows some aspects of sustainability and low noise feature. The circuit has NEGATIVE RESISTANCE at frequency range of 2-7 GHz, in which NEGATIVE RESISTANCE is adjusted with NEURAL NETWORK. The central frequency is 5.50 GHz, and band width is 278 MHz. In the central frequency the gain is 1 dB and quality factor (Q) is 24. The ACTIVE FILTER noise figure in central frequency is 1.51 dB. Generally, K factor (stability factor) is greater than one meaning circuit is completely stable in the considered frequency range. The results from regulations with NEURAL NETWORK has an error less than 1% in central frequency.

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  • Cite

    APA: Copy

    REZAPOUR, A., & REZAPOUR, P.. (2015). DESIGN OF BAND-PASS FILTER BASED ON ACTIVE CAPACITANCE CIRCUIT AND TUNABILITY WITH NEURAL NETWORK. JOURNAL OF RADAR, 3(2 (SERIAL NO. 8)), 63-69. SID. https://sid.ir/paper/244159/en

    Vancouver: Copy

    REZAPOUR A., REZAPOUR P.. DESIGN OF BAND-PASS FILTER BASED ON ACTIVE CAPACITANCE CIRCUIT AND TUNABILITY WITH NEURAL NETWORK. JOURNAL OF RADAR[Internet]. 2015;3(2 (SERIAL NO. 8)):63-69. Available from: https://sid.ir/paper/244159/en

    IEEE: Copy

    A. REZAPOUR, and P. REZAPOUR, “DESIGN OF BAND-PASS FILTER BASED ON ACTIVE CAPACITANCE CIRCUIT AND TUNABILITY WITH NEURAL NETWORK,” JOURNAL OF RADAR, vol. 3, no. 2 (SERIAL NO. 8), pp. 63–69, 2015, [Online]. Available: https://sid.ir/paper/244159/en

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