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EVALUATION OF THE FUNCTIONAL ELEMENTS INFLUENCE ON THE PARAMETERS OF THE QKD SYSTEM BASED ON B92 PROTOCOL
К.Е. Rumyantsev, P.D. Mironova, H.H. Shakir2022-11-01Abstract ▼The influence of the parameters of functional elements on the energy, time and probabilistic
characteristics of the quantum key distribution system (QKD) based on the B92 protocol is studied.
The dependences of the probability of writing correct and erroneous bits into a raw quantum
key sequence are plotted for various lengths of a fiber-optic communication line (FOCL) and the
use of various lasers (EML-laser; DFB-laser; VCSEL-laser and FP-laser) and photodetector
modules (id201; id210; id220; id230). Thus, changes in the probability of writing a correct bit into
a raw quantum key sequence are much more significant than changes in the probability of writing
an erroneous bit (50.9 times versus 3.3 times with FWHM=80 pm and a change in the length of
the FOCL from 10 to 100 km). This is due to the fact that with an increase in the length of the
FOCL, the probability of the absence of registration at the receiving station of photons or dark
current pulses (DCP) sharply increases. Numerical material indicates a direct proportional dependence
of the probability of writing an erroneous bit on the frequency of generation of noise
pulses of single-photon avalanche photodiodes (SAPD). So, with an increase in the frequency of
occurrence of DCP by 60 times (from 100 to 6000 Hz), the probability of recording an erroneous
bit also increases by 60 times (for example, with a FOCL length of 100 km – 6.39 versus 383.3).
It has been established that the root-mean-square deviation of the photon delay time is directly proportional to the length of the FOCL and the width of the laser spectrum. With a spectrum width
of FWHM=10 pm and an increase in the FOCL length from 10 to 100 km (by a factor of 10), the
standard deviation of the photon delay time also increases by a factor of 10 (from 4.16 to 41.6 ps).
To achieve the best performance of the QKD system as a whole, it is advisable to use a laser with
a minimum width of the radiation spectrum, for example, an EML-laser. However, EML-lasers are
considered the most complex and expensive of all the considered types of lasers, so the use of
EML-lasers significantly increases the cost of the entire QKD system. -
ANALYSIS OF THE CAUSES OF ERRORS IN THE AMPLITUDE-PHASE DISTRIBUTION OF LINEAR PHASED ANTENNA ARRAYS AND METHODS FOR THEIR REDUCTION
S.S. Bybin , N.P. Dunaev , S.V. Kuzmin , А.N. Morozov2026-02-27Abstract ▼To use a phased array antenna in the beamforming mode, it is necessary to establish a certain amplitude-phase distribution at the inputs of the emitting elements. Amplitude and phase errors distort the radiation pattern. The paper analyzes the sources of errors in the amplitude-phase distribution of phased antenna arrays, including parasitic phase shifts, nonlinear amplification paths, temperature instability and mutual electromagnetic coupling between the elements. Three methods of calibration and adjustment of phased antenna arrays are described, based on direct measurements of the transmission coefficients in the near zone and the subsequent calculation of the impact vector using inverse and pseudo-inverse matrices of mutual connections, which provides a systematic approach to error elimination. To obtain the initial values, each channel was pre-calibrated along a closed path using a vector network analyzer. Technique 1 implements correction for a set of points in space and one set of states of each channel. To increase the stability of the solution, method 2 uses the regularization of the elements of the matrix of interconnections based on an additional set of measured states of each channel. Method 3 makes it possible to construct a mathematical model of a specific implementation of a phased array antenna based on measurements with a fixed channel state, which ensures the formation of an arbitrary amplitude-phase state without repeated measurements. An experimental setup of an eight-element equidistant linear phased array antenna was carried out. The lattice attenuator/phase shifter modules are based on the PE44820 phase shifter and PE4302 attenuator debugging boards and are controlled by a microcontroller to automatically change phases and amplitudes. The measurements were carried out automatically on a near-field stand in an anechoic shielded chamber using a vector network analyzer. Calibration results are presented, matrices of mutual relationships are constructed and radiation patterns are formed, confirming the operability of the proposed approaches. Since the experimental array is low-element, the results of applying the considered techniques are compared with the results of tuning in the far zone performed using an evolutionary algorithm.
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PROBABILISTIC CHARACTERISTICS OF THE THRESHOLD ALGORITHM FOR DETECTING SYNCHRONIZING PULSES IN THE QUANTUM KEY DISTRIBUTION SYSTEM BASED ON INFORMATION FROM AN ADJACENT PAIR OF TIME SEGMENTS
K. E. Rumyantsev, Y. K. Mironov, P.D. Mironova2020-11-22Abstract ▼Quantum key distribution systems (QKD) provide increased security of transmitted information.
For the stable operation of the QKD system, accurate synchronization of user stations is
required with minimal time costs. An algorithm for detecting a sync signal with a threshold test is
proposed. It is assumed that the sync pulse is simultaneously in two adjacent time segments. The
probability of detecting a pair of time segments where a sync pulse is present is determined by the
probability of exceeding the threshold level by the total number of signal and noise pulses recorded
in two adjacent segments. The purpose of the research is aimed at a comparative analysis of the
threshold level and probabilistic characteristics of synchronization equipment during threshold
testing of each pair of time segments within a time frame, obtained when orienting on the Gauss
and Poisson model for the number of photons and dark current pulses (DCP) received during the
time segment analysis. The probabilistic characteristics of the detection algorithm for sync signals
are studied in a quantum key distribution system based on a comparison of the number of photons
from an adjacent pair of time segments with a threshold level. The application of the approximation
of the statistical properties of the processes at the output of the photodetector by the Poisson
law and the normal distribution is analyzed. The influence of the Poisson and Gaussian models on
the choice of the threshold level and the calculation of the synchronization efficiency during the
threshold testing of each pair of time segments within the time frame are estimated, obtained by
orientation on the Gauss and Poisson models for the number of photons and DCP received during
the analysis of the time segment. It was established that the choice of the threshold level based on
the normal distribution gives an underestimated value. The approximation of the statistics of photons
and pulses of dark current by a normal law provides a threshold level lower than the required
one. Moreover, the difference grows with stricter requirements for the probability of false positives.
The obtained probabilistic properties of the sync signal detection algorithm based on the
analysis of the sum of counts from an adjacent pair of segments with a threshold level allow us to
formulate recommendations for choosing an approximation of the signal statistics: for express
calculations of probabilistic characteristics, it is advisable to use the Gaussian model; if a higher
analysis accuracy is required, it is recommended to use the Poisson model. -
NON-PARAMETRIC METHOD FOR DETECTING BREAKDOWN OF TIME SERIES USING THE RANDOM WALKS THEORY MECHANISM
G. F. Filaretov , Z. Bouchaala2020-11-22Abstract ▼The task of the on-line detection of a sudden change in the probability properties of a time series
is considered, which is usually interpreted as the detecting task of change point the characteristics
(breakdown) in the observed stochastic process. The actuality of the development of research on this
topic is noted, which is due to the emergence of ever new applied problems where methods and algorithms
for breakdown detecting can be successfully used - in particular, when creating monitoring systems
in industry, ecology, medicine, etc. Two main varieties of methods for breakdown detecting are
discussed: parametric and nonparametric. It is noted that, although nonparametric methods, ceteris
paribus, are inferior to parametric methods in terms of efficiency (the speed of breakdown detecting),
they also have a number of advantages, without requiring, in particular, for their application detailed
information about the probabilistic properties of the controlled process. This is fundamentally important
for building monitoring systems, when detailed information about these properties may either be completely
absent and then it is necessary to conduct a rather laborious preliminary study of it, or to be
unreliable. An original sequential nonparametric algorithm for detecting discord is proposed based on
the implementation of the random walk mechanism or, more specifically, using the theory of success
runs. The operating principle of the control algorithm is explained and its description is given. The results
of the study of the basic statistical characteristics of the algorithm, including the determination of
its effectiveness, and results of comparison with known parametric methods, are given. The area of possible
practical use of the proposed algorithm is highlighted, where its effectiveness remains quite high.
The prospects of using the proposed algorithm as part of the software and algorithmic support of monitoring
systems for various purposes are noted. -
GENERALIZED CIRCULAR CRITERION FOR THE ABSOLUTE SUSTAINABILITY OF DISTRIBUTED SYSTEMS
Z. R. Mayransaev, A. B. Chernyshev2021-07-18Abstract ▼Systems control with distributed parameters is one of the complex and important sections of
cybernetics, like the science of control, information and systems. The need to study and develop
this scientific discipline is due to the fact that to control many objects you have to take into account
their geometric parameters, that is, their spatial length. So far, many results have been
achieved in the field of distributed system theory, but for the most part these results are aimed at
the study of linear systems. In the course of researching non-linear automatic systems, as one of
the main tasks, the task of finding possible states of equilibrium of the system under study is
solved. Research into the sustainability of such systems is also a major challenge. Using the technique
of decomposition of functions that describe distributed signals in rows, according to the
general theory of the Fourier series, a class of distributed systems is allocated, in which decomposition by its own vector functions is permissible. Due to this capability, the transmission function
that describes an object with distributed parameters appears as a combination of transmission
functions in separate spatial mods. The concept of "generalized coordinates" is introduced to take
into account the spatial coordinates. For systems with distributed parameters, the spatialamplifier
gain factor is adopted as a direct non-linear angular angular ratio. A cylindrical criterion
for the absolute stability of non-linear distributed systems has been developed and formulated,
based on the generalization of the circular criterion. An illustration of the spatial sector of
nonlineaivity is given. For the first time, a generalized circular criterion for the stability of distributed
systems has been developed, taking into account the dependence of non-linear characteristics
on spatial coordinates. A graphic illustration of this criterion is presented. -
DECIMETER RANGE GENERATOR
A. N. Zikiy, A. S. Kochubey2021-07-18Abstract ▼The receiver's heterodyne and the transmitter's master oscillator are the most important
components, as they determine their stability and range properties. In recent years, the Meteor
plant has created a number of new voltage-controlled generator chips with high electrical parameters.
However, the advertising materials of this company do not contain a number of parameters
that are important from the point of view of the consumer. Therefore, the purpose of this work
is to study the main characteristics of the generator, including those not declared by the supplier:
the width of the signal spectrum, the average steepness of the modulation characteristic, the level
of harmonics. The object of the study is the GUN382 microchip in a typical switching circuit.
The results of an experimental study of a VCO operating in the 1200 MHz region are presented.
The estimation of parasitic products in the spectrum of the output signal is given. Photos of the
spectrum of the output signal showing a small width of the spectral line are presented. The modulation
characteristics are measured when the control voltage and supply voltage change, and their
average steepness is calculated. These data allow us to make reasonable requirements for the
stability of the control and supply voltages. The results obtained can be used in receiving and
transmitting equipment for communication, navigation, and electronic warfare. The article expands
the idea of the line of generators of the Meteor plant, demonstrates their high electrical
characteristics: operating frequency range 1200 ± 16 MHz; output power of at least 1 dBm; supply
voltage + 5V; control voltage from 0 to 8 V; the level of the second and third harmonics does
not exceed minus 22 dB in relation to the useful signal. -
JUSTIFICATION OF THE APPEARANCE OF A PROMISING AUTOMATED SYSTEM FOR RECORDING PERSONNEL OF THE ARMED FORCES OF THE RUSSIAN FEDERATION
S. A. Botsvin , V.A. Khvatkov2021-11-14Abstract ▼Accounting of personnel of the Armed Forces of the Russian Federation (AFRF) is carried
out using several highly specialized automated systems, which does not allow solving tasks in a
single information space. The study identified problematic issues that arise when solving the tasks
of accounting personnel of the AFRF, such as low efficiency, the use of various media, low reliability
of information due to the lack of synchronization mechanisms between systems, etc.
The main subsystems are identified and a list of elements is defined for building the functional
structure of a promising automated system that will provide operational access to information for
an unlimited number of officials and automatically solve the tasks of collecting, summarizing and
presenting quantitative (statistical) data. Based on the analysis of the topological structure of the
personnel bodies of the AFRF, it is proposed to use a hierarchical (tree-like) structure to build a
promising automated system and transfer information between databases of different levels to
reduce information redundancy and load on server equipment. The priority option for organizing
data storage is distributed storage, which was chosen based on the requirements for the stability
and reliability of the operation of a promising automated system, especially in wartime. At the
same time, the use of replication mechanisms will allow for instant synchronization of information
at all levels. The calculation of the required resources for storing and processing information at
various levels, depending on the number of military personnel at each level, the frequency of occurrence
of personnel events and the amount of memory required for storing personal information.
On the basis of which the technical characteristics of the elements of a promising system, necessary
and sufficient for high-quality functioning, are determined, and the requirements for the technical
characteristics of server equipment and data storage systems are obtained. The conducted
research made it possible to construct a scheme for the perspective appearance of an automated
personnel accounting system and to justify the relevance of solving the problem of forming and
developing a new automated system. In addition, the results of the work made it possible to determine
the principles laid down in the prospective system, such as the construction of a hierarchical
distributed database, the creation of mechanisms for synchronizing information between system
elements, the possibility of using existing technical means and the organization of information
interaction with other automated systems








