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Abstract

The results of the first (since 1939) hydrochemical investigations of Gliwice Channel have been presented. The polluted K.lodnica River affects bad water quality of the canal. For example the concentrations of chlorides (Cl), sulfates (S04), sodium (Na), potassium (K), conductivity and dissolved substances quality of water is out of standards. In the case of BOD and COD the water quality is changed from out of classes to II class. pH and oxygen concentration are in I class. Although no salinity waters flow into the canal, the water quality get improved slightly only. The decrease of pollutants concentration is related to theirs dispersion. In the case of water quality the self-purification processes are of secondary importance.
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Authors and Affiliations

Maciej Kostecki
Jerzy Kozłowski
Bartłomiej Zych
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Abstract

The results of the first (since 1939) investigation of Gliwice Channel have been presented. The concentrations of mobiles and constant forms of heavy metals in the bottom sediments have been given. The changes range was: for chromium 4.8-463.2 mg Cr/kg, for cadmium 0.6-18.2 mg Cd/kg, for lead 4-197 mg Pb/kg, for cupric 6-2152 mg Cu/kg, for manganese 33-1664 mg Mn/kg, for nickel 5-85.2 mg Ni/kg, for zinc 64-2244 mg Zn/kg, for iron 2080-94080 mg Fe/kg. The percent participation of stable forms of chromium decreases during longitude profile of canal whereas participation of mobile forms is increases. The stable and mobile forms of cadmium (Cd) increase. The concentrations of stable and mobile form of lead (Pb) decrease. The percent participation of stable forms of copper (Cu) is high (82- 100%). On total longitude of canal the participation of mobile forms of manganese (Mn) increases, but stable forms have advantage. For nickel (Ni) the stable forms are prevail too (form 55% to 81%). The participation of mobile forms of zinc (Zn) is 18% to 60%. The sharply outlined relationship between metals and organic matter concentrations indicates the significance in the metals transport processes from water to bottom sediments. Consequently, pollution of bottom sediments by heavy metals is the secondary result of organic substances of water enrichment. The relationships between total metals and iron (Fe) concentration points to the role of heavy metals stable amalgamations with amorphous ferric oxides. The cascade character and pulsatory water flow of Gliwice Channel makes the concentrations of heavy metals in bottom sediments successfully decrease in each canal section. At the same time, in each section of the canal gradual increase in metals concentration occurs and the maximum values for all determinated metals are present just before sluices closing sections. The best ecological effect, from the economical point of view, is obtained by bottom sediment removal on the about 1 km sectors over each of the sluice.
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Authors and Affiliations

Maciej Kostecki
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Abstract

Results of the study presented in this article and earlier have been the first ones since the Gliwice Canal was put into service in 1939. Until now there have been no investigations concernig (the Canal state in the area of hydro-chemical study), sanitary state or level of sediment contamination. The aim of this study was therefore to obtain information about the current pollution. The level of aquatic environment in some reaches of Gliwice Channel. This article presents the results of investigations carried out in order to assess of water quality in the Canal relating to nitrogen and phosphorus compounds. The following nutrients were determined in water samples ammonia, nitrite and nitrate nitrogen as well as organic dissolved and organic suspended nitrogen. In addition concentrations of orthophosphates, polyphosphates and organic phosphorus were analyzed. The analyses were carried out in water samples taken in six samplings from January till June 2000. Water samples were drawn at 7 sampling points. Samples of bottom sediments were taken at 21 sample points. Basing on the results of analyses the water quality of Gliwice Canal has been determined. A classification of chemical parameters was carried out under the provision in force. Basing on this classification we can state that water in the Canal is does not quality for any class system. We can also affirm that the water quality on the whole length of Gliwice Canal has improved only slightly even though waters of lower pollution levels supply the Canal.
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Authors and Affiliations

Maciej Kostecki
Jerzy Kozlowski
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Abstract

The article presents an example of the use of functional series for the analysis of nonlinear systems for discrete time signals. The homogeneous operator is defined and it is decomposed into three component operators: the multiplying operator, the convolution operator and the alignment operator. An important case from a practical point of view is considered – a cascade connection of two polynomial systems. A new, binary algorithm for determining the sequence of complex kernels of cascade from two sequences of kernels of component systems is presented. Due to its simplicity, it can be used during iterative processes in the analysis of nonlinear systems (e.g. feedback systems).

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Authors and Affiliations

M. Siwczyński
S. Żaba
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Abstract

Quantum cascade laser is one of the most sophisticated semiconductor devices. Its technology requires extremely high precision and layers quality. Device performance is limited by thermal extraction form laser core. One of solutions is to apply highly resistivity epitaxial material acting as insulating layer on top of the QCL. Present work describes consequent steps of elaboration of MOVPE technology of Fe-compensated InP layers for further applications in quantum cascade lasers.

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Authors and Affiliations

Mikołaj Badura
ORCID: ORCID
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Abstract

Effective algorithms of constructing models of generalized parametric sections of the n-th order consisting of cascade and parallel elementary LTV section connections are presented in this paper. Moreover, the methods of impulse responses determination have been shown.

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Authors and Affiliations

Anna Piwowar
Janusz Walczak
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Abstract

This article is a continuation of the topic of artificial water bodies in Ukraine, which was started in our previous publication in 2020. It was devoted to accounting and monitoring of ponds at the local and national levels. Reservoirs play important role in water supply for various sectors of the economy. For this reason, much more attention is paid to reservoirs by the State Agency of Water Resources of Ukraine (Ukr. Derzhavne ahentstvo vodnykh resursiv Ukrainy), the Ministry of Ecology and Natural Resources of Ukraine (Ukr. Ministerstvo ekolohii ta pryrodnykh resursiv Ukrainy), scientists and specialists. The main tasks of the article are: to establish patterns of territorial distribution of reservoirs in administrative regions and river basins districts; to identify the role of large and small reservoirs in the balance of river runoff regulation. There are 1054 reservoirs in Ukraine, so it can be considered a country rich in reservoirs. The volume of the cascade of six reservoirs on the Dnieper River and the Dniester Reservoir is 85%, other reservoirs – 15% of the total number. At the same time, there are 1047 other reservoirs (middle, small and very small), which provide for regional needs and which have their own patterns of distribution throughout the country. The main trend in their creation was water supply of industrial regions, in particular Kharkiv, Donetsk, Dnipropetrovsk and others. About 28% of reservoirs are leased. These reservoirs also require clear accounting and monitoring at the national level, attention from water management and environmental organizations.
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Bibliography

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DUBNYAK S., TIMCHENKO V. 2000. Ecological role of hydrodynamic processes in the Dnieper reservoirs. Ecological Engineering. Vol. 16(1) p. 181–188. DOI 10.1016/S0925-8574(00)00103-8. FAO undated. Aquastat [online]. [Access 30.04.2020]. Available at: http://www.fao.org/nr/water/aquastat/data/query/index.html?lang=en
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ICOLD 2020. World register of dams. General synthesis [online]. International Commission on Large Dams [Access 01.04.2020]. Available at: https://www.icold-cigb.org/GB/world_register/general_synthesis.asp
KHIL’CHEVSKIY V.K. 1994. Effect of agricultural production on the chemistry of natural waters: A survey. Hydrobiological Journal. Vol. 30(1) p. 82–93.
KHIL’CHEVSKII V.K., KHIL’CHEVSKII R.V., GOROKHOVSKAYA M.S. 1999. Environmental aspects of chemical substance discharge with river flow into water bodies of the Dnieper River basin. Water Resources. Vol. 26(4) p. 453–458.
KHILCHEVSKYI V.K., GREBIN V.V. 2020. Hydrographic monitoring of ponds in Ukraine and their classification by morphometric parameters. Proceedings XIV International Scientific Conference: Monitoring of Geological Processes and Ecological Condition of the Environment. European Association of Geoscientists & Engineers p. 1–5. DOI 10.3997/2214-4609.202056004.
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SOJKA M., JASKUŁA J., WICHER-DYSARZ J., DYSARZ T. 2016. Assessment of dam construction impact on hydrological regime changes in lowland river – a case of study: The Stare Miasto Reservoir located on the Powa River. Journal of Water and Land Development. No. 30 p. 119–125. DOI 10.1515/jwld-2016-0028.
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YATSYK A.V., TOMILTSEVA A.I. 2018. Obgruntuvannia neobkhidnosti perspektyvnykh naukovykh doslidzhen na Dniprovskykh i Dnis-trovskykh vodoskhovyshchakh [Justification of the need for promising scientific research on the Dnieper and Dniester reservoirs]. Hidroenerhetyka Ukrainy. Vol. 1–2 p. 79–81.
YATSYK A.V., TOMILTSEVA A.I., TOMILTSEV M.H., VOLOSHKINA O.S. 2003. Pravyla ekspluatatsii vodoskhovyshch Dniprovskoho kaskadu [Rules for the operation of the Dnieper Cascade reservoirs]. Kyiv. Heneza. ISBN 966-504-377-3 pp. 176.
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Authors and Affiliations

Valentyn Khilchevskyi
1
ORCID: ORCID
Vasyl Grebin
1
ORCID: ORCID
Sergiy Dubniak
2
ORCID: ORCID
Myroslava Zabokrytska
3
ORCID: ORCID
Hanna Bolbot
4
ORCID: ORCID

  1. Taras Shevchenko National University of Kyiv, 64/13, Volodymyrska Street, Kyiv, 01601, Ukraine
  2. Institute of Hydrobiology National Academy of Sciences of Ukraine, Kyiv, Ukraine
  3. Lesya Ukrainka Eastern European National University, Lutsk, Ukraine
  4. Ukrainian Hydrometeorological Institute, Kyiv, Ukraine
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Abstract

Since drug companies are driven by the need to produce profit they are unwilling to make large investments in the development of new drugs if there is no market large enough to justify such investment. For this reason, veterinarians face a major obstacle – the veterinary drug market is not very profitable, which sometimes leads to not having a licensed drug available for treatment in veterinary practice. In this case, the cascade procedure allows veterinarians to, under certain circumstances, prescribe human approved drugs. The aim of our study was to analyze the pattern of human approved drugs prescription for 150 medical records of dogs participating in the survey. The results show that antimicrobial agents were the most commonly prescribed drugs for animals (50%) of all human approved drugs, and beta-lactams (38.6%) were the most widely used antibiotic classes. The most common general conditions for therapeutic use of antimicrobials in this study were digestive, skin and respiratory disorders. Our study shows that the frequency of bacterial culture, susceptibility testing and cytology was very low. Even though the off-label use of human approved drugs in animal practice is regulated by law, the results of this study indicate the need for more specific strategies and guidelines for such use. This may represent a potential for improvement by raising veterinarians’ awareness toward more prudent use of human drugs.
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Authors and Affiliations

D. Tomanic
1
D. Stojanovic
1
B. Belić
1
I. Davidov
1
N. Novakov
1
M. Radinovic
1
N. Kladar
2
Z. Kovacevic
1

  1. University of Novi Sad, Department of Veterinary Medicine, Faculty of Agriculture, Trg Dositeja Obradovica 8, 21 000 Novi Sad, Serbia
  2. University of Novi Sad, Center for Medical and Pharmaceutical Investigations and Quality Control/Department of Pharmacy, Faculty of Medicine, Hajduk Veljkova 3, 21000 Novi Sad, Serbia
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Abstract

In the presented paper, two different meshing strategies are compared to show the accuracy advantage of properly constructed mesh. For this purpose, it was necessary to automatize simulation process, in order to perform a number of calculations without the necessity of user interaction. Later, a method of results extrapolation as well as a way of judging mesh quality are introduced for more throughout comparison of presented discretization strategies. The latter method, called grid convergence index, is also used to calculate probability range of accurate result. To conclude, outcomes of this study are in agreement with general opinon on pracitces for an accurate CFD result. Structured O-type mesh with refinement at wall boundaries (often referred to as “inflation layers”) performs better than simple free mesh.
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Authors and Affiliations

Adam Tater
1
ORCID: ORCID
Pavel Mačák
1
Patrik Kovář
1

  1. Center of Aviation and Space Research, Faculty of Mechanical Engineering, Czech Technical University in Prague, Jugoslávských partyzán˚u1580/3, 16000, Prague 6, Czech Republic
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Abstract

In this paper ∼16 μm-emitting multimode InP-related quantum cascade lasers are presented with the maximum operating temperature 373 K, peak and average optical power equal to 720 mW and 4.8 mW at 303 K, respectively, and the characteristic temperature (T0) 272 K. Two types of the lasers were fabricated and characterized: the lasers with a SiO2 layer left untouched in the area of the metal-free window on top of the ridge, and the lasers with the SiO2 layer removed from the metal-free window area. Dual-wavelength operation was obtained, at λ ∼ 15.6 μm (641 cm−1) and at λ ∼ 16.6 μm (602 cm−1) for lasers with SiO2 removed, while within the emission spectrum of the lasers with SiO2 left untouched only the former lasing peak was present. The parameters of these devices like threshold current, optical power and emission wavelength are compared. Lasers without the SiO2 layer showed ∼15% lower threshold current than these ones with the SiO2 layer. The optical powers for lasers without SiO2 layer were almost twice higher than for the lasers with the SiO2 layer on the top of the ridge.

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Authors and Affiliations

A. Szerling
S. Slivken
M. Razeghi
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Abstract

In this article, we propose the realization of XNOR logic function by using all-optical XOR and NOT logic gates. Initially, both XOR and NOT gates are designed, simulated and optimized for high contrast outputs. T-shaped waveguides are created on the photonic crystal platform to realize these logic gates. An extra input is used to perform the inversion operation in the NOT gate. Inputs in both the gates are applied with out of phase so as to have a destructive interference between them and produce negligible intensity for logic ‘0'. The XOR and NOT gates are simulated using Finite Difference Time Domain method which results with a high contrast ratio of 55.23 dB and 54.83 dB, respectively at a response time of 0.136 ps and 0.1256 ps. Later, both the gates are cascaded by superimposing the output branch of the waveguide of XOR gate with the input branch of the waveguide of NOT gate so that it can be resulted with compact size for XNOR logic function. The resultant structure of XNOR logic came out with the contrast ratio of 12.27 dB at a response time of 0.1588 ps. Finally, it can be concluded that the proposed structures with fair output performance can suitably be applied in the design of photonic integrated circuits for high speed computing and telecommunication systems.

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Authors and Affiliations

E.H. Shaik
N. Rangaswamy
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Abstract

A new approach to passive electromagnetic modelling of coupled–cavity quantum cascade lasers is presented in this paper. One of challenges in the rigorous analysis of such eigenvalue problem is its large size as compared to wavelength and a high quality factor, which prompts for substantial computational efforts. For those reasons, it is proposed in this paper to consider such a coupled-cavity Fabry-Perot resonant structure with partially transparent mirrors as a two-port network, which can be considered as a deterministic problem. Thanks to such a novel approach, passive analysis of an electrically long laser can be split into a cascade of relatively short sections having low quality factor, thus, substantially speeding up rigorous electromagnetic analysis of the whole quantum cascade laser. The proposed method allows to determine unequivocally resonant frequencies of the structure and the corresponding spectrum of a threshold gain. Eventually, the proposed method is used to elaborate basic synthesis rules of coupled–cavity quantum cascade lasers.

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Authors and Affiliations

M. Krysicki
B. Salski
P. Kopyt
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Abstract

The article focuses on the problem of structure degradation and ecosystem functioning – the urgency that identifies the relevance of operations at a strategic level aimed at providing the integrated assessment of ecological stability of water. Determination of water quality indicators were divided into blocks according to the criteria of salt composition, according to chemical saprobological indicators and the content of specific substances of toxic and radiation action. According to the results of block analysis, the integrated ecological index of water quality was determined by the dependence of water quali-ty on the indicators of ecological stabilization of the landscape and the structure of biotechnical elements. The article de-termines the relationships between worsening quality of surface waters and stabilization or destabilization of the landscape structure. The research was conducted on medium and large streamflows on the Right Bank of Polesie region of the Dnie-per-River cascade within which the tracts of land were identified and the landscape ecological stability (CESL1) and land-scape biotechnical elements coefficients (CESL2) were determined. The retrospective analysis was performed of the sur-face water features on the Right Bank of Polesie region of the Dnieper- River cascade and the main trends in salt block in-dicators, trophic and saprobiological block indicators, and in the content of toxic and radioactive substances at observation sites were estimated. Based on obtained data, the integrated assessment in trends of surface water quality on the Right Bank of Polesie region of the Dnieper- River cascade was made and the main parameters and scale of stabilization and destabili-zation of landscape impact on the water quality formation were defined.

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Authors and Affiliations

Tetyana P. Fedoniuk
Roman H. Fedoniuk
Ludmila D. Romanchuk
Anatolyy A. Petruk
Viktor M. Pazych
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Abstract

The Bulletin of the Polish Academy of Sciences: Technical Sciences (Bull.Pol. Ac.: Tech.) is published bimonthly by the Division IV Engineering Sciences of the Polish Academy of Sciences, since the beginning of the existence of the PAS in 1952. The journal is peer‐reviewed and is published both in printed and electronic form. It is established for the publication of original high quality papers from multidisciplinary Engineering sciences with the following topics preferred: Artificial and Computational Intelligence, Biomedical Engineering and Biotechnology, Civil Engineering, Control, Informatics and Robotics, Electronics, Telecommunication and Optoelectronics, Mechanical and Aeronautical Engineering, Thermodynamics, Material Science and Nanotechnology, Power Systems and Power Electronics.

Journal Metrics: JCR Impact Factor 2018: 1.361, 5 Year Impact Factor: 1.323, SCImago Journal Rank (SJR) 2017: 0.319, Source Normalized Impact per Paper (SNIP) 2017: 1.005, CiteScore 2017: 1.27, The Polish Ministry of Science and Higher Education 2017: 25 points.

Abbreviations/Acronym: Journal citation: Bull. Pol. Ac.: Tech., ISO: Bull. Pol. Acad. Sci.-Tech. Sci., JCR Abbrev: B POL ACAD SCI-TECH Acronym in the Editorial System: BPASTS.

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Authors and Affiliations

Radosław Patelski
Dariusz Pazderski
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Abstract

The paper presents verification of a peak detection method cooperating with infrared radiation detector module applications. The work has been divided into parts including SPICE simulations and presentation of results obtained with the constructed prototype. The design of the peak detector dedicated to applications with very short pulses requires a different approach than that for standard solutions. It is mainly caused due to the ratio of pulse width and time period. In the described application this ratio is less than 10%. The paper shows testing of an analogue circuit which is capable to be inserted in these applications.

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Authors and Affiliations

Krzysztof Achtenberg
Janusz Mikołajczyk
Dariusz Szabra
Artur Prokopiuk
Zbigniew Bielecki
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Abstract

This paper presents a control concept for a single-axle mobile robot moving on the horizontal plane. A mathematical model of the nonholonomic mechanical system is derived using Hamel’s equations of motion. Subsequently, a concept for a tracking controller is described in detail. This controller keeps the mobile robot on a given reference trajectory while maintaining it in an upright position. The control objective is reached by a cascade control structure. By an appropriate input transformation, we are able to utilize an input-output linearization of a subsystem. For the remaining dynamics a linear set-point control law is presented. Finally, the performance of the implemented control law is illustrated by simulation results.

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Authors and Affiliations

Tobias Zaiczek
Matthias Franke
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Abstract

Controlling mechanical systems with position and velocity cascade loops is one of the most effective methods to operate this type of systems. However, when using low-rate sampling electronics, the implementation is not trivial and the resulting performance can be poor. This paper proposes effective tuning rules that only require establishing the bandwidth of the inner velocity loop and an estimation of the inertia of the mechanism. Since discrete-time mechatronic systems can also exhibit unstable behavior, several stability conditions are also derived. By using the proposed methodology, a P-PI control algorithm is developed for a desktop haptic device, obtaining good experimental performance with low sampling-rate electronics.

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Authors and Affiliations

Jorge Juan Gil
Iñaki Díaz
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Abstract

Food processing technologies for food preservation have been in constant development over a few decades in order to meet current consumer’s demands. Healthy competitive improvements are observed in both thermal and non-thermal food processing technology since past two decades due to technical revolution. Among these novel technologies, pulsed electric field food processing technology has shown to be a potential non-thermal treatment capable of preserving liquid foods. The high-voltage pulse generators specifically find their applications in pulsed electric field technology. So, this paper proposes a new structure of a high-voltage pulse generator with a cascaded boost converter topology. The choice of a cascaded boost converter helps in selecting low DC input voltage and hence the size and space requirement of the high-voltage pulse generator is minimized. The proposed circuit is capable of producing high-voltage pulses with flexibility of an adjusting duty ratio and frequency. The designed circuit generates a maximum peak voltage of 1 kV in the frequency range of 7.5–20 kHz and the pulse width range of 0.8–1.8 μs. Also, the impedance matching between the cascaded boost converter and the high-voltage pulse generator is found simple without further additional components. The efficiency can be improved in the circuit by avoiding low frequency transformers.
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Authors and Affiliations

S. Krishnaveni
1
ORCID: ORCID
V. Rajini
1

  1. Sri Sivasubramaniya Nadar College of Engineering, India
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Abstract

In this paper, we introduce the notion of h-stability for set-valued differential equations. Necessary and sufficient conditions are established by using Lyapunov theory. Then, based on the obtained results, we study the ℎ-stability of perturbed and cascaded systems. Finally, an example illustrates the proposed theorems
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Authors and Affiliations

Sihem Boukthir
1 2
ORCID: ORCID
Boulbaba Ghanmi
3
ORCID: ORCID
Imed Basdouri
3
ORCID: ORCID
Dalil Ichalal
4
ORCID: ORCID
Jean Lerbet
5

  1. Department of Mathematics, Faculty of Sciencesof Sfax, Route Soukra Km 4, BP 802, 3018, Sfax, Tunisia
  2. The IBISC laboratory, University ofEvry Val d’Essonne, University of Paris Saclay University, 40, rue de Pelvoux, 91020, Evry Courcouronnes,France
  3. Department of Mathematics, Faculty of Sciences of Gafsa, Sidi AhmedZarroug, 2112, Gafsa, Tunisia
  4. The IBISC laboratory, University of Evry Vald’Essonne, University of Paris Saclay University, 40, rue de Pelvoux, 91020, Evry Courcouronnes, France
  5. The LaMME laboratory, UMR CNRS 8071, Universityof Evry Val d’Essonne, University of Paris Saclay, 23 Bd de France, 91037, Evry CEDEX, France
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Abstract

A Novel Intelligent control of a Unified Power Quality Conditioner (UPQC) coupled with Photovoltaic (PV) system is proposed in this work. The utilization of a Re-lift Luo converter in conjunction with a Cascaded Artificial Neural Network (ANN) Maximum Power Point Tracking (MPPT) method facilitates the optimization of power extraction from PV sources. UPQC is made up of a series and shunt Active Power Filter (APF), where the former compensates source side voltage quality issues and the latter compensates the load side current quality issues. The PV along with a series and shunt APFs of the UPQC are linked to a common dc-bus and for regulating a dc-bus voltage a fuzzy tuned Adaptive PI controller is employed. Moreover, a harmonics free reference current is generated with the aid of CNN assisted dq theory in case of the shunt APF. The results obtained from MATLAB simulation.
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Authors and Affiliations

Ramesh Rudraram
1
Sasi Chinnathambi
1
Manikandan Mani
2

  1. Electrical Engineering Department, Annamalai University, Annamalainagar, India
  2. Electrical and Electronics Engineering Department, Jyothishmathi Institute of Technology and Science, Karimnagr, Telangana, India
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Abstract

This paper presents some construction analysis and test results of a Free Space Optics system operating at the wavelength of 9.35 μm. In the system, a quantum cascade laser and a photoreceiver with mercury cadmium telluride photodetectors were used. The main parameters of these elements were discussed taking into account a data link operation. It also provides to determine a data range for various weather conditions related to scattering and scintillation. The results of numerical analyses defined the properties of currently available FSO technologies working in the near infrared or in the short infrared range of spectrum versus the performances of the developed system. The operation of this system was verified in three different test environments. The obtained results may also contain important issues related to the practical application of any FSO system.

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Authors and Affiliations

Janusz Mikolajczyk
Dariusz Szabra
Artur Prokopiuk
Krzysztof Achtenberg
ORCID: ORCID
Jacek Wojtas
ORCID: ORCID
Zbigniew Bielecki
ORCID: ORCID
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Abstract

The analysis of subsonic stall flutter in turbomachinery blade cascade is carried out using a medium-fidelity reduced-order aeroelastic numerical model. The model is a type of field mesh-free approach and based on a hybrid boundary element method. The medium-fidelity flow solver is developed on the principle of viscous-inviscid two-way weak-coupling approach. The hybrid flow solver is employed to model separated flow and stall flutter in the 3D blade cascade at subsonic speed. The aerodynamic damping coefficient w.r.t. inter blade phase angle in traveling-wave mode is estimated along with other parameters. The same stability parameter is used to analyze the cascade flutter resistance regime. The estimated results are validated against experimental measurements as well as Navier-Stokes based high fidelity CFD model. The simulated results show good agreement with experimental data. Furthermore, the hybrid flow solver has managed to bring down the computational cost significantly as compared to mesh-based CFD models. Therefore, all the prime objectives of the research have been successfully achieved.
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Authors and Affiliations

Chandra Shekhar Prasad
1
Pavel Šnábl
1
Luděk Pešek
1
ORCID: ORCID

  1. Institute of Thermomechanics of the CAS, Prague, Czech Republic
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Abstract

High-power terahertz sources operating at room-temperature are promising for many applications such as explosive materials detection, non-invasive medical imaging, and high speed telecommunication. Here we report the results of a simulation study, which shows the significantly improved performance of room-temperature terahertz quantum cascade lasers (THz QCLs) based on a ZnMgO/ZnO material system employing a 2-well design scheme with variable barrier heights and a delta-doped injector well. We found that by varying and optimizing constituent layer widths and doping level of the injector well, high power performance of THz QCLs can be achieved at room temperature: optical gain and radiation frequency is varied from 108 cm−1 @ 2.18 THz to 300 cm−1 @ 4.96 THz. These results show that among II–VI compounds the ZnMgO/ZnO material system is optimally suited for high-performance room-temperature THz QCLs.

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Authors and Affiliations

V.P. Sirkeli
H.L. Hartnagel
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Abstract

Lasers emitting mid-infrared (MIR) beams have become indispensable for spectroscopy, free space communication or remote security measures. To the one of the most promising families of the lasers suitable for these applications certainly belongs a group of the Quantum Cascade Lasers (QCL). However, among the conditions they must satisfy there is a high enough radiance of the beam they emit. Radiance depends in a complicated way on the laser output power and optical quality of the laser beam. This paper has been devoted to a description and a short analysis of the factors that decide about radiance of so far developed QCLs. Literature concerning both single devices and QCL arrays operating in beam combining systems have been examined and results described. The survey may be useful for estimation of how far the QCLs have come of age.

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Authors and Affiliations

B. Mroziewicz
E. Pruszyńska-Karbownik

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