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For its special relevance, we need to mention here the use of millimeter wave (mmW) communications (30 to 300 GHz).
A space-time RIPS (STRIPS) [22] uses a space-time code and millimeter wave (MMW) band to combat fading and multipath effects.
Sixty gigahertz millimeter wave (MMW) is a promising technology for accurate TOA estimation due to its unique advantages which include high time resolution [1], high multipath resolution [2], and robustness to interference [3].
This paper presents a new time of arrival (TOA) estimation technique using an improved energy detection (ED) receiver based on the empirical mode decomposition (EMD) in an impulse radio (IR) 60 GHz millimeter wave (MMW) system.
The millimeter wave (MMW) signal at 60 GHz can be extracted by filtering and then transmitted to multiple further remote radio units (RRUs) to implement the future plug and play flexible networking in the hotspot areas.
In contrary to traditional heterodyne interferometers, the application of a single sideband modulator (SSBM) eliminates the necessity of the second millimeter wave (MMW) oscillator, which averts the intermediate frequency (IF) stability problem aroused by the two high frequency oscillators in the traditional heterodyne configuration.
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Millimeter-wave (MMW) systems are high frequency wireless systems with a center frequency of around 60 GHz.
However, the accuracy of RCMC would be seriously decreased by the residual range-dependent phase, which is a fatal problem for high-resolution millimeter-wave (MMW) SAR imaging.
The highlight here is probably the fact that Facebook's millimeter-wave (MMW) radio technology, which can be used for drone-to-ground communications or for more traditional terrestrial applications, keeps getting better.
Unlike the conventional MIMO systems, Millimeter-wave (mmW) systems lay away to employ the power predatory equipment such as ADC or RF chain in each branch of MIMO system because of hardware constraints.
In millimeter-wave (mmW) frequencies, however, the design of the Doherty amplifier is challenging because of the requirements in the Doherty structure and relatively poor performance of active and passive components at the mmW frequency range.
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