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Izvestiya SFedU
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ISSN 2311-3103 online
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  • DISCRETE-ANALOGUE FILTER OF THE SECOND ORDER ON SWITCHED CAPACITORS WITH TUNING OF POLE FREQUENCY BY DIGITAL POTENTIOMETER

    D.Y. Denisenko , N.N. Prokopenko , Y.I. Ivanov , D.V. Kuznetsov
    179-189
    2025-11-10
    Abstract ▼

    A discrete-analogue filter of the second order on two frequency-switching capacitors is developed and investigated. The proposed circuit contains two inputs (In_LPF_HPF, In_BPF_NPF) and four outputs (Out_LPF, Out_BPF, Out_HPF, Out_NPF). The filter type (numerator of the transfer function) is determined by connecting a signal source to the corresponding input of the circuit and taking a signal from the corresponding output. The pole attenuation depends on the resistance of a single resistor R5, which does not affect the other parameters. Therefore, the pole attenuation can be tuned using this resistor. To set the passband gain at a given level, it is appropriate to use resistor R1 in the LPF and HPF, and resistor R2 for the BPF and NPF. Changing these resistors will not cause changes in other parameters of the filter circuit. It is established that the pole frequency depends on the resistance of the resistor R8 or digital potentiometer Kdp (Kf), the transmission coefficient of which can be changed by changing the binary digital code Kf, fed to its control inputs, and the other parameters of the filter link do not depend on them, so by changing the resistance of this resistor or the transmission coefficient of the digital potentiometer the pole frequency can be tuned in a wide range while preserving other parameters. Computer modelling of the investigated discrete-analogue filter is performed in Micro-Cap environment. The sequences of pulses controlling electronic keys are given. Graphs of output voltages at the circuit outputs (Out_LPF, Out_BPF, Out_HPF, Out_NPF) are shown. The application of a digital potentiometer in the filter circuit is extremely promising in the construction of adaptive signal processing systems.

  • UAV GROUP MANAGEMENT WHEN WORKING OUT OF CRISIS FLIGHT SITUATIONS IN SOLVING TRANSPORT PROBLEMS

    А.I. Savelyev, V.V. Lebedeva, I.V. Lebedev, К.V. Kamynin, L.D. Kuznetsov, А.L. Ronzhin
    2022-04-21
    Abstract ▼

    The relevance of the development of algorithms for managing a group of UAVs in the event of
    crisis situations that affect the performance of the task is substantiated. An algorithm for autonomous
    collective (decentralized) control of a group of UAVs is described when performing the target task of
    transporting goods, as well as combined control in the event of crisis situations when the autonomouscontrol mode cannot be fully implemented. The algorithm for working out a crisis situation in case of a
    lack of energy resources on board the UAV and the return of group agents to the starting position is
    described in detail. The results of modeling the movement of a group of UAVs of multirotor and aircraft
    types and working out a crisis situation for managing a group of UAVs based on information about the
    reserves of energy or fuel resources are presented. During the experiment, iteratively calculated the
    remaining fuel when the UAV moved to the landing point, as well as the amount of fuel available to the
    UAV at a given time. As a result of the experiments, it was found that the time for calculating the balance
    of the energy resource does not exceed 6.792 ms. If the leader runs out of fuel, the cargo transportation
    mission ends ahead of schedule, since it cannot be completed without the participation of the
    leader. If several slaves fail, the mission can be continued if their number does not exceed a predetermined
    value, which is critical for the continuation of the cargo delivery mission. The results of experimental
    studies on modeling the flight of an UAV with a load are presented, during which a flight route
    was built that simulates a curvilinear trajectory of movement in urban conditions from the starting point
    to the end point, where the UAV is landing and transferring the cargo. In the experiments, the developed
    UAV and the onboard fastening system of the thermal container were used. During flight tests, the average
    horizontal speed of the UAV was set to 10 m/s. The length of the flight was 5350 m. The flight time
    was 13 minutes. 51 seconds.

  • SHAPING OF CONTOURED-BEAM ANTENNA MAIN LOBE BY PROFILING OF REFLECTOR ANTENNA

    К.М. Zanin, D.D. Gabrielyan, Y.V. Kuznetsov, S.Е. Mishenko
    2024-10-08
    Abstract ▼

    In satellite communication complexes, it is required to ensure a given level of the gain of the space
    antenna in a given serviced area. A lower level of gain beyond this area is also required. The boundary of
    the coverage area may have a complex shape that does not change during the operation of the communication
    system. To meet these requirements, reflector antennas with a profiled reflector are used. The law
    of profiling the reflector surface is described by smooth analytical functions. However, when forming a
    contour lobe with a more complex shape, the required phase distribution may have discontinuities during
    the transition through the period 2π. These gaps cannot be eliminated by smooth functions without distortion.
    In this case, the known approaches to profiling reflectors of reflector antennas do not allow obtaining
    a radiation pattern with a given quality. The goal of the work was constructing a reflector of a reflector
    antenna, which provides the formation of a radiation pattern with specified parameters. To achieve
    this goal, the following tasks have been solved: 1. Development of an algorithm for profiling the reflector
    of a reflector antenna, taking into account the shape of the boundary of the serviced area and taking into
    account the given law of distribution of the gain; 2. Conducting numerical simulations on the construction
    of the reflector profile. In the course of the research, an algorithm has been developed that allows you to
    obtain the reflector profile of a reflector antenna. This reflector antenna generates a field distribution at
    the aperture corresponding to the radiation pattern with the required parameters. To do this, the calculation
    of the field distribution on the plane was performed, and the surface of the reflector was synthesized
    based on the calculation results. Numerical simulations have confirmed the possibility of constructing a
    reflector antenna that forms a radiation pattern with specified parameters.

  • FUNDAMENTALS OF DESIGNING HIGH-TEMPERATURE ANALOGIC MICROSCIRCUIT ON WIDE-GAP SEMICONDUCTORS (REVIEW)

    А.V. Bugakova, D.V. Kuznetsov, V. Е. Chumakov, D.V. Kleimenkin, М. А. Sergeenko
    2023-10-23
    Abstract ▼

    An analytical review of promising technological processes for high-temperature analog microcircuits,
    which are in demand in space, aviation and automotive instrumentation, petrochemical
    industry, electric power industry, military electronics, medicine, etc., is presented. The problems
    of designing microcircuits of this class based on wide-gap semiconductors (silicon carbide
    (SiC), gallium nitride (GaN), gallium arsenide (GaAs)) that provide a wide range of operating
    temperatures (-200°С…+500°С). Currently, "low-current" circuitry based on SiC, GaN, GaAs
    wide-gap semiconductors for operation at high temperatures is extremely undeveloped, which
    does not allow designing new-generation analog products in the interests of Russian enterprises.
    Today, many topical issues of SiC, GaN, GaAs high-temperature circuitry and dynamics have not
    been resolved. Therefore, it is necessary to study structural and technological solutions, as well as
    heat removal. In this regard, the article analyzes the problems of designing microcircuits of these
    classes. At the same time, one should take into account the limitations of technological processes, which, in many cases, allow creating only the same type of active elements, which makes it difficult
    to build microcircuits. The relevance of the above studies is related to the problems of import substitution
    under the conditions of sanctions, when the purchase of an electronic component base for
    responsible use from foreign firms becomes unavailable. Russian recommendations are needed on
    the development of rules for designing analog interface microcircuits (operational and differential
    difference amplifiers, transimpedance and charge-sensitive amplifiers, compensation voltage stabilizers
    and buffer amplifiers, current conveyors, etc.) for the tasks of processing signals from
    sensors of physical quantities in the high temperature range (+150 °С ... +500°С).

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