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The wideband frequency response is further experimentally modified by adjusting the gap between the repulsive magnets.
And the discussion about series and parallel resonances in wideband frequency domain is presented in [18].
This paper presents a non-ideality analysis of the wideband frequency synthesizer, and proposes a new digital architecture for signal modulation and quantization.
The new generation software defined radios implement a wideband RF front-end which calls for a wideband frequency synthesizer for generating the local oscillator signal.
The multi-rate ADPLL-based frequency modulator architecture provides wideband frequency modulation capability, which can be used for many mm-wave applications.
Moreover the proposed DPA has major advantages in terms of the linearity and works on a wideband frequency range (2.1 2.7 GHz) with minimum 40% drain efficiency (DE).
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This paper describes the limiting behavior of conventional and WL equalizers in wideband frequency-selective channels.
The wideband frequency-selective channel is modeled using a Rayleigh fading channel model with infinite number of time domain channel taps.
Indeed, OFDM combats frequency-selective fading effectively by dividing a wideband frequency-selective fading channel into parallel narrowband flat fading subchannels, while MIMO systems increase the data rate significantly over single-input single-output (SISO) systems by employing multiple transmit and receive antennas.
With the introduction of discrete Fourier transform-precoded-orthogonal frequency-division multiple access (DFT-precoded-OFDMA) [1, 2] in the uplink of the long-term evolution (LTE) standard [3], there has been renewed interest in the design and analysis of these two receivers operating in wideband frequency-selective channels.
Numerical results demonstrate that the adaptive SMA wall joint with a proper temperature is able to control the vibration from a source with wideband frequencies or time-varying frequencies, and the transmission loss is more than 20 dB.
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