We introduce a model for the distribution of frequency-polarization hyper-entangled photon pairs in a flexible-grid optical network. In order to optimize entanglement fidelity and entangled bit rate, we apply a geneti...
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In previous work, it was shown that a noise radars have two signal-to-noise ratios (SNRs) associated with them: one for the receive signal and another for the signal retained within for matched filtering. However, the...
In previous work, it was shown that a noise radars have two signal-to-noise ratios (SNRs) associated with them: one for the receive signal and another for the signal retained within for matched filtering. However, these two SNRs can be combined into a single correlation coefficient which can be easily be used for performance prediction. Unlike SNR, this correlation coefficient can be estimated directly from radar detection data. This work presents experimental verification of the theoretical relationship between the SNRs of a noise radar and the correlation coefficient, showing that it holds for a wide range of transmit powers.
In this paper, the task processing approach at the edge of the Internet of Things (IoT) network in improving energy consumption was investigated. First, the subject of maximizing the use of energy is defined as the ma...
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Solar flares are energetic events in the solar atmosphere that are often linked with solar radio bursts (SRBs). SRBs are observed at metric to decametric wavelengths and are classified into five spectral classes (Typ...
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In previous work, estimators were derived for various parameters characterizing the signals of a noise radar. One of these parameters was the phase shift that accrued in noise radar signals as they traveled through fr...
In previous work, estimators were derived for various parameters characterizing the signals of a noise radar. One of these parameters was the phase shift that accrued in noise radar signals as they traveled through free space. Although the theory of these estimators, including their probability distributions, are well developed, they have not yet been experimentally verified. In this work, we built a laboratory-based noise radar and used it to show that experimentally-obtained probability distributions for the phase estimator match the theoretical probability distributions almost perfectly. The theory was tested at different transmit powers and different integration lengths, and are shown to agree closely with theoretical expectations in all cases. This constitutes strong experimental evidence for the theoretical results that we obtained previously.
***-periments on a synthetic log of the non-secondary hy-pertension MTP and empirical findings demonstrate the effectiveness of our *** results show that the process mining in our approach framework can automatically ...
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***-periments on a synthetic log of the non-secondary hy-pertension MTP and empirical findings demonstrate the effectiveness of our *** results show that the process mining in our approach framework can automatically generate more accurate MTP mod-els,and the subprocess models based on treatment pat-terns make the models easy to understand.
We use electro-optic phase modulation to characterize the time-resolved second-order coherence of a multimode signal field generated via pulsed spontaneous four-wave mixing in an integrated 40.5 GHz Si3N4 microring. &...
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This paper presents a supervised machine learning (ML)-based protection approach for identifying different types of transmission lines' faults, including faults during power swing, at several locations and variabl...
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We perform time-resolved second-order coherence characterization of multiple photon resonances from an integrated 40.5 GHz silicon nitride microring, using electro-optic modulation to observe interference effects othe...
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This paper presents a novel testbed designed for 5th-Generation (5G) positioning using Universal Software Radio Peripherals (USRPs). The testbed integrates multiple units: an Operation Unit for test management, a User...
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