Íàö³îíàëüíèé àåðîêîñì³÷íèé óí³âåðñèòåò ³ì. Ì.ª. Æóêîâñüêîãî “Õàðê³âñüêèé àâ³àö³éíèé ³íñòèòóò”

 

ISSN 1814-4225. ÐÀIJÎÅËÅÊÒÐÎÍͲ ² ÊÎÌÏ’ÞÒÅÐͲ ÑÈÑÒÅÌÈ. – Õàðê³â, ÍÀÓ ÕÀ², 2012. - ¹ 7(59). – 332 ñ.

ISSN 1814-4225. ÐÀÄÈÎÝËÅÊÒÐÎÍÍÛÅ È ÊÎÌÏÜÞÒÅÐÍÛÅ ÑÈÑÒÅÌÛ. – Õàðüêîâ, ÍÀÓ ÕÀÈ, 2012. - ¹ 7(59). – 332 ñ.

ISSN 1814-4225. RADIOELECTRONIC AND COMPUTER SYSTEMS. – Kharkiv, NAU KhAI, 2012. – ¹ 7(59). – 332 ñ.

 

ÑÒÀÒÒ² (articleS)

 

Àâòîðè
(ìîâà
îðèã³íàëó)

Íàçâà ñòàòò³  (article title)

Ñòî­ð³íêè

(pages)

English

Óêðà¿íñüêà ìîâà

Ðóññêèé ÿçûê

Ãàðàíòîçäàòí³còü òà ñèñòåìè ³ êîìóí³êàö³¿ âèñîêî¿ ãîòîâíîñò³

Àðóòþíÿí À.Ð.,
Çàâàäñêàÿ Ò.Â.,
Âàëü÷óê Ð.Â.,
Ìåðêóëîâ À.Â.

FORMATION METHOD OF MATHEMATICAL MODEL COMMAND-INFORMATION NETWORK

ÌÅÒÎÄÈÊÀ ÏÎÁÓÄÎÂÈ ÌÀÒÅÌÀÒÈ×Íί ÌÎÄÅ˲  ÊÎÌÀÍÄÍÎ-²ÍÔÎÐÌÀÖ²ÉÍί ÌÅÐÅƲ

ÌÅÒÎÄÈÊÀ ÏÎÑÒÐÎÅÍÈß ÌÀÒÅÌÀÒÈ×ÅÑÊÎÉ ÌÎÄÅËÈ ÊÎÌÀÍÄÍÎ-ÈÍÔÎÐÌÀÖÈÎÍÍÎÉ ÑÅÒÈ

13–16
(4)

Êîíäðàòåíêî Þ.Ï.,
ѳäåíêî ª.Â.

HIERARCHICAL ORGANIZATION AND CORRECTION IN REAL TIME OF FUZZY DSS WITH VARIABLE STRUCTURE OF INPUT INFORMATION

²ªÐÀÐÕ²×ÍÀ ÎÐÃÀͲÇÀÖ²ß ÒÀ ÊÎÐÅÊÖ²ß Â ÐÅÀËÜÍÎÌÓ ×ÀѲ ÍÅײÒÊÈÕ ÑÏÏÐ ÏÐÈ Ç̲ÍÍ²É ÑÒÐÓÊÒÓв ÂÕ²ÄÍί ²ÍÔÎÐÌÀÖ²¯

ÈÅÐÀÐÕÈ×ÅÑÊÀß ÎÐÃÀÍÈÇÀÖÈß È ÊÎÐÐÅÊÖÈß   ÐÅÀËÜÍÎÌ ÂÐÅÌÅÍÈ  ÍÅ×ÅÒÊÈÕ ÑÏÏÐ Ñ ÏÅÐÅÌÅÍÍÎÉ ÑÒÐÓÊÒÓÐÎÉ ÂÕÎÄÍÎÉ ÈÍÔÎÐÌÀÖÈÈ

17–23
(7)

Êîâàëåíêî Í.Ñ.,
Àáäóë-Õàäè Àëàà Ìîõàììåä,
Õàð÷åíêî Â.Ñ.

THE INFLUENCE OF INTENSITY OF PROPHYLACTIC MAINTENANCE ON THE READINESS OF AUTOMATED SECURITY SYSTEMS

âÏËÈ ²íòåíñèâíîñò² ïðîâåäåíÍÿ ïðîô²ëàêòè÷ÍÎãî òåõîáñëóÃÎÂÓÂÀÍÍÿ  íà ãîòîâí²ñòü ÀÂÒÎÌÀÒÈÇÎÂÀÍÈÕ ñèñòåì ÎÕÎÐÎÍÈ

ÂËÈßÍÈÅ ÈÍÒÅÍÑÈÂÍÎÑÒÈ ÏÐÎÂÅÄÅÍÈß ÏÐÎÔÈËÀÊÒÈ×ÅÑÊÎÃÎ ÒÅÕÎÁÑËÓÆÈÂÀÍÈß ÍÀ ÃÎÒÎÂÍÎÑÒÜ ÀÂÒÎÌÀÒÈÇÈÐÎÂÀÍÍÛÕ ÑÈÑÒÅÌ ÎÕÐÀÍÛ

24–29
(6)

Êðèâóëÿ Ã.Ô.,
Øêèëü À.Ñ.

ANALYSIS OF INTERCOMMUNICATION OF INTEGRAL DESCRIPTIONS OF READINESS AND USER’S COMPETENCE FOR MONOERGATIC COMPUTER SYSTEM

ÀÍÀË²Ç ÂÇÀªÌÎÇÂ'ßÇÊÓ ²ÍÒÅÃÐÀËÜÍÈÕ ÕÀÐÀÊÒÅÐÈÑÒÈÊ ÃÎÒÎÂÍÎÑÒ² ÌÎÍÎÅÐÃÀÒÈ×Íί ÊÎÌÏ'ÞÒÅÐÍί ÑÈÑÒÅÌÈ ² ÊÎÌÏÅÒÅÍÒÍÎÑÒ² ÊÎÐÈÑÒÓÂÀ×À

ÀÍÀËÈÇ ÂÇÀÈÌÎÑÂßÇÈ ÈÍÒÅÃÐÀËÜÍÛÕ  ÕÀÐÀÊÒÅÐÈÑÒÈÊ ÃÎÒÎÂÍÎÑÒÈ ÌÎÍÎÝÐÃÀÒÈ×ÅÑÊÎÉ ÊÎÌÏÜÞÒÅÐÍÎÉ ÑÈÑÒÅÌÛ È ÊÎÌÏÅÒÅÍÒÍÎÑÒÈ ÏÎËÜÇÎÂÀÒÅËß

30–36
(7)

Ëþá÷åíêî Â.Â.

MODEL OF INFORMATION INTERACTIONS  IN STUDY PROCESS

ÌÎÄÅËÜ ²ÍÔÎÐÌÀÖ²ÉÍί ÂÇÀªÌÎIJ¯  ÏÐÎÖÅѲ ÍÀÂ×ÀÍÍß

ÌÎÄÅËÜ ÈÍÔÎÐÌÀÖÈÎÍÍÎÃÎ ÂÇÀÈÌÎÄÅÉÑÒÂÈß Â ÏÐÎÖÅÑÑÅ ÎÁÓ×ÅÍÈß

37–40
(4)

Ïîíî÷îâíûé Þ.Ë.,
Çàñóõà Ñ.À.,
Õàð÷åíêî Â.Ñ.

RESEARCH OF TWOCHANNEL INFORMATIon-MANAGING SYSTEM AVAILABILITY SIMULATION MODELS OF SPACE VEHICLE

ÄÎÑ˲ÄÆÅÍÍß ²Ì²ÒÀÖ²ÉÍÈÕ ÌÎÄÅËÅÉ ÃÎÒÎÂÍÎÑÒ² ÄÂÎÊÀÍÀËÜÍί ²ÍÔÎÐÌÀÖ²ÉÍÎ-ÓÏÐÀÂËßþ÷î¿ ÑÈÑÒÅÌÈ ÊÎÑ̲×ÍÎÃÎ ÀÏÀÐÀÒÓ

ÈÑÑËÅÄÎÂÀÍÈÅ ÈÌÈÒÀÖÈÎÍÍÛÕ ÌÎÄÅËÅÉ ÃÎÒÎÂÍÎÑÒÈ ÄÂÓÕÊÀÍÀËÜÍÎÉ ÈÍÔÎÐÌÀÖÈÎÍÍÎ-ÓÏÐÀÂËßÞÙÅÉ ÑÈÑÒÅÌÛ ÊÎÑÌÈ×ÅÑÊÎÃÎ ÀÏÏÀÐÀÒÀ

41–47
(7)

Ñò³éê³ Grid-, Web- ³ Cloud-ñèñòåìè

Áîõàí Ê.À.,
Õóäîëåé Ì.Ñ.

REPRESENTATION SERVICE-ORIENTED SYSTEMS REQUESTS QUEUE BASED ON TIME PETRI NETS WITH PRIORITY

ÏÐÅÄÑÒÀÂËÅÍÍß ×ÅÐà ÇÀÏÈҲ ÑÅвÑ-ÎвªÍÒÎÂÀÍÈÕ ÑÈÑÒÅÌ ÍÀ ÎÑÍβ ÌÅÐÅÆ ÏÅÒв, ßʲ ÂÐÀÕÎÂÓÞÒÜ ÏвÎÐÈÒÅÒ ÒÀ ÄÈÍÀ̲ÊÓ ×ÀÑÓ

ÏÐÅÄÑÒÀÂËÅÍÈÅ Î×ÅÐÅÄÅÉ ÇÀÏÐÎÑΠÑÅÐÂÈÑ-ÎÐÈÅÍÒÈÐÎÂÀÍÍÛÕ ÑÈÑÒÅÌ ÍÀ ÎÑÍÎÂÅ ÂÐÅÌÅÍÍÛÕ ÑÅÒÅÉ ÏÅÒÐÈ Ñ ÏÐÈÎÐÈÒÅÒÀÌÈ

48–53
(6)

Ìåëåíåö À.Â.

Clouds integration architecture of the distributed system of storage, operative updating and granting data about potentially dangerous objects on the basis of technology cloud computing

Àðõ³òåêòóðà ³íòåãðàö³¿ îáëàêîâ ðîçïîä³ëåíî¿ ñèñòåìè çáåðåæåííÿ, îïåðàòèâíîãî îíîâëåííÿ òà íàäàííÿ äàíèõ ïðî ïîòåíö³éíî íåáåçïå÷í³ îá’ºêòè íà îñíîâ³ òåõíîëî㳿 cloud computing

ÀÐÕÈÒÅÊÒÓÐÀ ÈÍÒÅÃÐÀÖÈÈ ÎÁËÀÊÎÂ ÐÀÑÏÐÅÄÅËÅÍÍÎÉ ÑÈÑÒÅÌÛ ÕÐÀÍÅÍÈß, ÎÏÅÐÀÒÈÂÍÎÃÎ ÎÁÍÎÂËÅÍÈß È ÏÐÅÄÎÑÒÀÂËÅÍÈß ÄÀÍÍÛÕ Î ÏÎÒÅÍÖÈÀËÜÍÎ ÎÏÀÑÍÛÕ ÎÁÚÅÊÒÀÕ ÍÀ ÎÑÍÎÂÅ ÒÅÕÍÎËÎÃÈÈ CLOUD COMPUTING

54–59
(6)

Îäàðóùåíêî Î.Í.,
Æèâèëî Ñ.Â.,
Õàð÷åíêî Â.Ñ.,
Îäàðóùåíêî Å.Á.

ARCHITECTURAL ANALYSIS OF FAULT-TOLERANT SERVERS FOR EVALUATION OF THEIR RELIABILITY

ÀÍÀË²Ç ÀÐÕ²ÒÅÊÒÓР ²ÄÌÎÂÎÑÒ²ÉÊÈÕ ÑÅÐÂÅв ÄËß ÎÖ²ÍÊÈ ¯Õ ÍÀIJÉÍÎÑÒ²

ÀÍÀËÈÇ ÀÐÕÈÒÅÊÒÓÐ ÎÒÊÀÇÎÓÑÒÎÉ×ÈÂÛÕ ÑÅÐÂÅÐΠÄËß ÎÖÅÍÊÈ ÈÕ ÍÀÄÅÆÍÎÑÒÈ

60–67
(8)

Ïîëüùèêîâ Ê.À.,
Îäàðóùåíêî Î.Í.,
Ëþá÷åíêî Å.Í.

ANALYSIS OF METHODS AND TECHNOLOGIES OF SERVICING THE REQUESTS FOR THE REAL-TIME TRAFFIC TRANSMISSION

ÀÍÀË²Ç ÌÅÒÎIJ ² ÒÅÕÍÎËÎÃ²É ÎÁÑËÓÃÎÂÓÂÀÍÍß ÇÀÏÈҲ ÍÀ ÏÅÐÅÄÀ×Ó Â ÌÅÐÅƲ ÒÐÀÔ²ÊÀ ÐÅÀËÜÍÎÃÎ ×ÀÑÓ

ÀÍÀËÈÇ ÌÅÒÎÄÎÂ È ÒÅÕÍÎËÎÃÈÉ ÎÁÑËÓÆÈÂÀÍÈß ÇÀÏÐÎÑΠÍÀ ÏÅÐÅÄÀ×Ó ÏÎÒÎÊΠÐÅÀËÜÍÎÃÎ ÂÐÅÌÅÍÈ Â ÒÅËÅÊÎÌÌÓÍÈÊÀÖÈÎÍÍÎÉ ÑÅÒÈ

68–72
(5)

Ðûæêîâà Î.Â.

COMPARATIVE EFFECTIVENESS OF ALGORITHMS RESIZING CONGESTION WINDOW IN CLOUD COMPUTING NETWORKS

ÏÎвÂÍßËÜÍÈÉ ÀÍÀË²Ç ÅÔÅÊÒÈÂÍÎÑÒ² ÂÈÊÎÐÈÑÒÀÍÍß ÀËÃÎÐÈÒ̲ Ç̲ÍÈ ÐÎÇ̲ÐÓ Â²ÊÍÀ ÏÅÐÅÂÀÍÒÀÆÅÍÜ Ó ÌÅÐÅÆÀÕ CLOUD COMPUTING

ÑÐÀÂÍÈÒÅËÜÍÛÉ ÀÍÀËÈÇ ÝÔÔÅÊÒÈÂÍÎÑÒÈ ÈÑÏÎËÜÇÎÂÀÍÈß ÀËÃÎÐÈÒÌÎÂ ÈÇÌÅÍÅÍÈß ÐÀÇÌÅÐÀ ÎÊÍÀ ÏÅÐÅÃÐÓÇÎÊ Â ÑÅÒßÕ CLOUD COMPUTING

73–78
(6)

Øìàòêîâ Ñ.È.

ORGANIZATION MODEL OF COMPUTING PROCESSES IN ADAPTIVE DISTRIBUTED COMPUTER NETWORKS

ÌÎÄÅËÜ ÎÐÃÀͲÇÀÖ²¯ ÎÁ×ÈÑËÞÂÀËÜÍÈÕ ÏÐÎÖÅѲ  ÀÄÀÏÒÈÂÍÈÕ ÐÎÇÏÎIJËÅÍÈÕ ÎÁ×ÈÑËÞÂÀËÜÍÈÕ ÌÅÐÅÆÀÕ

ÌÎÄÅËÜ ÎÐÃÀÍÈÇÀÖÈÈ ÂÛ×ÈÑËÈÒÅËÜÍÛÕ ÏÐÎÖÅÑÑΠ ÀÄÀÏÒÈÂÍÛÕ ÐÀÑÏÐÅÄÅËÅÍÍÛÕ ÂÛ×ÈÑËÈÒÅËÜÍÛÕ ÑÅÒßÕ

79–81
(3)

Yanovsky M.E.

THE REGULATORY FRAMEWORK FOR GREEN WI-FI: ANALYSIS AND DEVELOPMENT FOR ADAPTIVE NETWORKS

ÍÎÐÌÀÒÈÂÍÀ ÁÀÇÀ ÄËß GREEN WI-FI: ÀÍÀË²Ç ÒÀ ÐÎÇÂÈÒÎÊ ÄËß ÀÄÀÏÒÈÂÍÈÕ ÌÅÐÅÆ

ÍÎÐÌÀÒÈÂÍÀß ÁÀÇÀ ÄËß GREEN WI-FI: ÀÍÀËÈÇ È ÐÀÇÂÈÒÈÅ ÄËß ÀÄÀÏÒÈÂÍÛÕ ÑÅÒÅÉ

82–86
(5)

Ãîðáåíêî À.Â.,
Òàðàñþê Î.Ì.

SERVICING TIME MINIMIZATION TECHNIQUE FOR SERVICE-ORIENTED SYSTEMS

ÌÅÒÎÄÈÊÀ ̲Ͳ̲ÇÀÖ²¯ ×ÀÑÓ ÎÁÑËÓÃÎÂÓÂÀÍÍß ÑÅвÑ-ÎвªÍÒÎÂÀÍÈÕ ÑÈÑÒÅÌ

ÌÅÒÎÄÈÊÀ ÌÈÍÈÌÈÇÀÖÈÈ ÂÐÅÌÅÍÈ ÎÁÑËÓÆÈÂÀÍÈß ÑÅÐÂÈÑ-ÎÐÈÅÍÒÈÐÎÂÀÍÍÛÕ ÑÈÑÒÅÌ

87–91
(5)

²íôîðìàö³éíà áåçïåêà òà áåçïå÷íèé êîìï’þòèíã

Íåòêà÷¸âà Å.È.

PREDICTING THE NUMBER OF SOFTWARE DEFECTS BASED ON TESTING RESULTS

ÏÐÎÃÍÎÇ Ê²ËÜÊÎÑÒ² ÄÅÔÅÊҲ ÏÐÎÃÐÀÌÍÎÃÎ ÇÀÁÅÑÏÅ×ÅÍÍß ÇÀ ÐÅÇÓËÜÒÀÒÀÌÈ ÒÅÑÒÓÂÀÍÍß

ÏÐÎÃÍÎÇ ÊÎËÈ×ÅÑÒÂÀ ÄÅÔÅÊÒΠÏÐÎÃÐÀÌÌÍÎÃÎ ÎÁÅÑÏÅ×ÅÍÈß ÏÎ ÐÅÇÓËÜÒÀÒÀÌ ÒÅÑÒÈÐÎÂÀÍÈß

92–95
(4)

Íèêîëàåâà Þ.Ï.

Statistical Analysis of encrypted traffic transmission through transit network node

ÄÎÑ˲ÄÆÅÍÍß ÑÒÀÒÈÑÒÈ×ÍÈÕ ÕÀÐÀÊÒÅÐÈÑÒÈÊ ÏÅÐÅÄÀײ ØÈÔÐÎÂÀÍÈÕ ²ÍÔÎÐÌÀÖ²ÉÍÈÕ ÏÎÒÎʲ ×ÅÐÅÇ ÒÐÀÍÇÈÒÍÈÉ ÂÓÇÎË ÌÅÐÅƲ

ÈÑÑËÅÄÎÂÀÍÈÅ ÑÒÀÒÈÑÒÈ×ÅÑÊÈÕ ÕÀÐÀÊÒÅÐÈÑÒÈÊ ÏÅÐÅÄÀ×È ØÈÔÐÎÂÀÍÍÛÕ ÈÍÔÎÐÌÀÖÈÎÍÍÛÕ ÏÎÒÎÊΠ×ÅÐÅÇ ÒÐÀÍÇÈÒÍÛÉ ÓÇÅË ÑÅÒÈ

96–101
(6)

Íàä³éí³ñòü àïàðàòíèõ çàñîá³â òà ñèñòåì íà ïðîãðàìîâàíèõ êðèñòàëàõ

Áàðêàëîâ À.À.,
Ìàëü÷åâà Ð.Â.,
Ñîëäàòîâ Ê.À.

IMPLEMENTATION OF MOORE FSM WITH ENCODING OF COLLECTIONS OF MICROOPERATIONS WITH CPLD

ÐÅÀ˲ÇÀÖ²ß ÍÀ ÏË²Ñ ÀÂÒÎÌÀÒÀ ÌÓÐÀ Ç ÊÎÄÓÂÀÍÍßÌ ÍÀÁ²Ð²Â ̲ÊÐÎÎÏÅÐÀÖ²É

ÐÅÀËÈÇÀÖÈß ÍÀ ÏËÈÑ ÀÂÒÎÌÀÒÀ ÌÓÐÀ Ñ ÊÎÄÈÐÎÂÀÍÈÅÌ ÍÀÁÎÐÎÂ ÌÈÊÐÎÎÏÅÐÀÖÈÉ

102–107
(6)

Áåçä³òêî Î.Ì.

STRUCTURE OF OPERATING DEVICES OF PROCESSOR OF MICROARCHITECTURE ³80õ86 AND THEIR INFLUENCE ON FLAGS OF THE STATE

ÁÓÄÎÂÀ ÎÏÅÐÀÖ²ÉÍÈÕ ÏÐÈÑÒÐί ÏÐÎÖÅÑÎÐÀ ̲ÊÐÎÀÐÕ²ÒÅÊÒÓÐÈ ³80õ86 ÒÀ ¯Õ ÂÏËÈ ÍÀ ÏÐÀÏÎÐÈ ÑÒÀÍÓ

ÑÒÐÎÅÍÈÅ ÎÏÅÐÀÖÈÎÍÍÛÕ ÓÑÒÐÎÉÑÒ ÏÐÎÖÅÑÑÎÐÀ ÌÈÊÐÎÀÐÕÈÒÅÊÒÓÐÛ ³80õ86 È ÈÕ ÂËÈßÍÈÅ ÍÀ ÔËÀÃÈ ÑÎÑÒÎßÍÈß

108–113
(6)

Ãëóõîâ Â.Ñ.,
Ëóêåíþê À.À.,
Øåíäåðóê Ñ.Ã.

DATA TO CLOCK PHASE ALIGNMENT TECHNOLOGY IN SCIENTIFIC INFORMATION  COLLECTING SYSTEM OF SPACE VEHICLE

ÂÈÊÎÐÈÑÒÀÍÍß ÒÅÕÍÎËÎò¯ ÔÀÇÓÂÀÍÍß ÄÀÍÈÕ Â ²ÍÒÅÐÔÅÉѲ ÑÈÑÒÅÌÈ ÇÁÎÐÓ ÍÀÓÊÎÂί ²ÍÔÎÐÌÀÖ²¯ ÊÎÑ̲×ÍÈÕ ÀÏÀÐÀÒ²Â

ÈÑÏÎËÜÇÎÂÀÍÈÅ ÒÅÕÍÎËÎÃÈÈ ÔÀÇÈÐÎÂÊÈ ÄÀÍÍÛÕ Â ÈÍÒÅÐÔÅÉÑÅ ÑÈÑÒÅÌÛ ÑÁÎÐÀ ÍÀÓ×ÍÎÉ ²ÍÔÎÐÌÀÖÈÈ ÊÎÑÌÈ×ÅÑÊÈÕ ÀÏÏÀÐÀÒÎÂ

114–118
(5)

Ìåëüíèê À.Î.

PARALLEL ORDERED ACCESS MEMORY: APPLICATION AND variants OF building

ÏÀÐÀËÅËÜÍÀ ÏÀÌ'ßÒÜ Ç ÂÏÎÐßÄÊÎÂÀÍÈÌ ÄÎÑÒÓÏÎÌ: ÇÀÑÒÎÑÓÂÀÍÍß ÒÀ ÂÀвÀÍÒÈ ÏÎÁÓÄÎÂÈ

Ïàðàëëåëüíàÿ ïàìÿòü ñ óïîðÿäî÷åííûì äîñòóïîì: ÏÐÈÌÅÍÅÍÈÅ È ÂÀÐÈÀÍÒÛ ÏÎÑÒÐÎÅÍÈß

119–124
(6)

Ïåðåïåëèöûí À.Å.,
Õàð÷åíêî Â.Ñ.

THE ANALYSIS OF THE USE OF FPGA TECHNOLOGIES IN MEDICAL EQUIPMENT

ÀÍÀË²Ç ÇÀÑÒÎÑÓÂÀÍÍß ÏË²Ñ ÒÅÕÍÎËÎÃ²É Ó ÌÅÄÈ×ÍÎÌÓ ÎÁËÀÄÍÀÍͲ

ÀÍÀËÈÇ ÏÐÈÌÅÍÅÍÈß ÏËÈÑ ÒÅÕÍÎËÎÃÈÉ Â ÌÅÄÈÖÈÍÑÊÎÌ ÎÁÎÐÓÄÎÂÀÍÈÈ

125–130
(6)

Ãðîëü Â.Â.,
Ðîìàíêåâè÷ Â.À.,
Ìèëàä Ì.Ñ.,
Ïîòàïîâà Å.Ð.

ABOUT RECIPROCAL TESTING OF components in multiprocessor systems

ÏÐÎ ÂÇÀªÌÍÅ ÒÅÑÒÓÂÀÍÍß ÊÎÌÏÎÍÅÍҲ  ÁÀÃÀÒÎÏÐÎÖÅÑÎÐÍÈÕ ÑÈÑÒÅÌÀÕ

Î ÂÇÀÈÌÍÎÌ ÒÅÑÒÈÐÎÂÀÍÈÈ ÊÎÌÏÎÍÅÍÒÎÂ Â ÌÍÎÃÎÏÐÎÖÅÑÑÎÐÍÛÕ ÑÈÑÒÅÌÀÕ

131–134
(4)

ϳ÷óã³íà Î.Ñ.,
Äÿ÷åíêî Â.Ã.

ACCOMODATION PROBLEM FOR MODULES ON A CHIP AND POLYHEDRAL APPROACH FOR THE SOLVING

ÇÀÄÀ×À ÐÎÇÒÀØÓÂÀÍÍß ÏÐßÌÎÊÓÒÍÈÕ ÌÎÄÓ˲ ÍÀ ײϲ ÒÀ ÏÎ˲ÅÄÐÀËÜÍÈÉ Ï²ÄÕ²Ä ÄÎ ¯¯ ÐÎÇÂ'ßÇÀÍÍß

ÇÀÄÀ×À ÐÀÇÌÅÙÅÍÈß ÌÎÄÓËÅÉ ÍÀ ×ÈÏÅ È ÏÎËÈÝÄÐÀËÜÍÛÉ ÏÎÄÕÎÄ Ê ÅÅ ÐÅØÅÍÈÞ

135–141
(7)

Ùåðáàêîâà Ã.Þ.,
Êðûëîâ Â.Í.,
Ëîãâèíîâ Î.Â.,
Ïèñàðåíêî Ð.À.

INVESTIGATION OF THE ADAPTIVE SUB GRADIENT CLUSTERING METHOD IN THE WAVELET TRANSFORMING DOMAIN

ÄÎÑ˲ÄÆÅÍÍß ÀÄÀÏÒÈÂÍÎÃÎ ÑÓÁÃÐÀIJªÍÒÍÎÃÎ ÌÅÒÎÄÓ ÊËÀÑÒÅÐÈÇÀÖ²¯  ÏÐÎÑÒÎв ÂÅÉÂËÅÒ-ÏÅÐÅÒÂÎÐÅÍÍß

ÈÑÑËÅÄÎÂÀÍÈÅ ÀÄÀÏÒÈÂÍÎÃÎ ÑÓÁÃÐÀÄÈÅÍÒÍÎÃÎ ÌÅÒÎÄÀ ÊËÀÑÒÅÐÈÇÀÖÈÈ Â ÏÐÎÑÒÐÀÍÑÒÂÅ ÂÅÉÂËÅÒ-ÏÐÅÎÁÐÀÇÎÂÀÍÈß

142–146
(5)

Òàðàñåíêî Â.Ï.,
Òåñëåíêî Î.Ê.,
ßíîâñüêà Î.Þ.

THE POSSIBILITIES of THE simplest twO-directional  regular one-DImensional cascadeS of constructive modules CONCERNING THE REALIZATION OF THE different complete  permutations

ÌÎÆËÈÂÎÑÒ² ÍÀÉÏÐÎÑÒ²ØÈÕ ÄÂÎÍÀÏÐÀÂËÅÍÈÕ ÐÅÃÓËßÐÍÈÕ ÎÄÍÎÂÈ̲ÐÍÈÕ ÊÀÑÊÀIJ ÊÎÍÑÒÐÓÊÒÈÂÍÈÕ ÌÎÄÓ˲ ÙÎÄÎ ÐÅÀ˲ÇÀÖ²¯ вÇÍÈÕ ÏÎÂÍÈÕ Ï²ÄÑÒÀÍÎÂÎÊ

ÂÎÇÌÎÆÍÎÑÒÈ ÏÐÎÑÒÅÉØÈÕ ÄÂÓÍÀÏÐÀÂËÅÍÛÕ ðåãóëÿðíûÕ îäíîìåðíûÕ êàñêàäî êîíñòðóêòèâíûõ ìîäóëåé îÒÍÎÑÈÒÅËÜÍÎ ðåàëèçàöèè ðàçëè÷í³õ ïîëíÛõ ïîäñòàíîâîê

147–153
(7)

ijàãíîñòèêà òà â³äìîâîñò³éê³ñòü

Àòàìàíþê È.Ï.

NONLINEAR STOCHASTIC INFORMATION TECHNOLOGY FOR DIAGNOSIS OF TECHNICAL OBJECTS BASED ON A CANONICAL DECOMPOSITION OF A RANDOM SEQUENCE

²ÍÔÎÐÌÀÖ²ÉÍÀ ÒÅÕÍÎËÎÃ²ß ÍÅ˲ͲÉÍί ÑÒÎÕÀÑÒÈ×Íί IJÀÃÍÎÑÒÈÊÈ ÒÅÕͲ×ÍÈÕ ÎÁ’ªÊҲ ÍÀ ÎÑÍβ ÊÀÍÎͲ×ÍÎÃÎ ÐÎÇÊËÀÄÀÍÍß ÂÈÏÀÄÊÎÂί ÏÎÑ˲ÄÎÂÍÎÑÒ²

ÈÍÔÎÐÌÀÖÈÎÍÍÀß ÒÅÕÍÎËÎÃÈß ÍÅËÈÍÅÉÍÎÉ ÑÒÎÕÀÑÒÈ×ÅÑÊÎÉ ÄÈÀÃÍÎÑÒÈÊÈ ÒÅÕÍÈ×ÅÑÊÈÕ ÎÁÚÅÊÒΠÍÀ ÎÑÍÎÂÅ ÊÀÍÎÍÈ×ÅÑÊÎÃÎ ÐÀÇËÎÆÅÍÈß ÑËÓ×ÀÉÍÎÉ ÏÎÑËÅÄÎÂÀÒÅËÜÍÎÑÒÈ

154–158
(5)

Áëàãîäàðíûé Í.Ï.

MODEL OF SELF-DIAGNOZING HOMOGENIOUS PROCESSOR ENVIRONMENTS IN REAL TIME SCALE

ÌÎÄÅËÜ ÑÀÌÎijÀÃÍÎÑÒóâàííÿ ÎÄÍÎвÄÍÈÕ ÏÐÎÖÅÑÎÐÍÈÕ ÑÅÐÅÄÎÂÈÙ Ó ÐÅÀËÜÍÎÌÓ ÌÀØÒÀÁ² ×ÀÑÓ

ÌÎÄÅËÜ ÑÀÌÎÄÈÀÃÍÎÑÒÈÐÎÂÀÍÈß ÎÄÍÎÐÎÄÍÛÕ ÏÐÎÖÅÑÑÎÐÍÛÕ ÑÐÅÄ Â ÐÅÀËÜÍÎÌ ÌÀÑØÒÀÁÅ  ÂÐÅÌÅÍÈ

159–165
(7)

Äîëãîâ À.Þ.

METHOD OF THE ESTIMATION OF QUALITY OF CONTROL ON SMALL SIZE SAMPLES

ÌÅÒÎÄ ÎÖ²ÍÊÈ ßÊÎÑÒ² ÊÎÍÒÐÎËÞ ÏÎ ÂÈÁ²ÐÊÀÕ ÌÀËÎÃÎ ÎÁ'ªÌÓ

ÌÅÒÎÄ ÎÖÅÍÊÈ ÊÀ×ÅÑÒÂÀ ÊÎÍÒÐÎËß ÏÎ ÂÛÁÎÐÊÀÌ ÌÀËÎÃÎ ÎÁÚÅÌÀ

166–169
(4)

Åïèôàíîâ À.Ñ.

ESTIMATION of routes COMPLEXITY BASEd on Spectrum dynamic parameters

Îö³íêà ñêëàäíîñò³ ìàðøðóò³â íà îñíîâ³ ñïåêòðó äèíàì³÷íèõ ïàðàìåòð³â

ÎÖÅÍÊÀ ÑËÎÆÍÎÑÒÈ ÌÀÐØÐÓÒΠÍÀ ÎÑÍÎÂÅ ÑÏÅÊÒÐÀ ÄÈÍÀÌÈ×ÅÑÊÈÕ ÏÀÐÀÌÅÒÐÎÂ

170–174
(5)

Øåñòîïàë Î.Â.

THE TRANSFORMATION PROCESS OF BASELINE STEEL PRODUCTION FOR SUBSEQUENT MODELING

ÏÅÐÅÒÂÎÐÅÍÍß ÂÈÕIÄÍÈÕ ÏÎÊÀÇÍÈÊI ÒÅÕÍÎËÎÃÈ×ÍÎÃÎ ÏÐÎÖÅÑÓ ÏËÀÂËÅÍÍß ÑÒÀËI  ÄËß ÏÎÄÀËÜØÎÃÎ ÌÎÄÅËÞÂÀÍÍß

ÏÐÅÎÁÐÀÇÎÂÀÍÈÅ ÈÑÕÎÄÍÛÕ ÏÎÊÀÇÀÒÅËÅÉ ÒÅÕÍÎËÎÃÈ×ÅÑÊÎÃÎ ÏÐÎÖÅÑÑÀ ÂÛÏËÀÂÊÈ ÑÒÀËÈ ÄËß ÏÎÑËÅÄÓÞÙÅÃÎ ÌÎÄÅËÈÐÎÂÀÍÈß

175–179
(5)

Ñòðþê Î.Þ.,
Ëàâðóò Î.Î.

METHOD OF MAXIMIZATION OF PERCIEVED QUALITY OF SERVICE FOR Ad Hoc Wireless Networks subscribers

ÌÅÒÎÄ  ÌÀÊÑÈ̲ÇÀÖ²¯ ÑÏÐÈÉÍßÒÒß ßÊÎÑÒ² ÎÁÑËÓÃÎÂÓÂÀÍÍß ÀÁÎÍÅÍҲ  ÌÎÁ²ËÜÍί ÐÀIJÎÌÅÐÅƲ

Ìåòîä ìàêñèìèçàöèè âîñïðèÿòèÿ êà÷åñòâà îáñëóæèâàíèÿ àáîíåíòîâ ìîáèëüíîé ðàäèîñåòè

180–186
(7)

Òóðêèí È.Á.,
Êóçíåöîâà Þ.À.

THE TEST CONTROL ALGORITHM MODEL OF THE SPACECRAFT BOARD SYSTEMS

ÌÎÄÅËÜ ÊÅÐÓÞ×ÈÕ ÀËÃÎÐÈÒ̲ ÂÈÏÐÎÁÓÂÀÍÜ ÁÎÐÒÎÂÈÕ ÑÈÑÒÅÌ ÊÎÑ̲×ÍÈÕ ÀÏÀÐÀÒ²Â

ÌÎÄÅËÜ ÓÏÐÀÂËßÞÙÈÕ ÀËÃÎÐÈÒÌΠÈÑÏÛÒÀÍÈÉ ÁÎÐÒÎÂÛÕ ÑÈÑÒÅÌ ÊÎÑÌÈ×ÅÑÊÈÕ ÀÏÏÀÐÀÒÎÂ

187–191
(5)

Ôîðìàëüí³ ìåòîäè òà Case òåõíîëî㳿 âåðèô³êàö³¿

Dergunov A.V.

SPECIFICATION AND AUTOMATIC DETECTION OF PERFORMANCE PROBLEMS IN MESSAGE PASSING (MPI) APPLICATIONS

ÎÏÈÑ ² ÀÂÒÎÌÀÒÈ×ÍÅ ÂÈßÂËÅÍÍß ÏÐÎÁËÅÌ ÏÐÎÄÓÊÒÈÂÍÎÑÒ²  MPI ÄÎÄÀÒÊÀÕ

ÎÏÈÑÀÍÈÅ È ÀÂÒÎÌÀÒÈ×ÅÑÊÎÅ ÂÛßÂËÅÍÈÅ ÏÐÎÁËÅÌ ÏÐÎÈÇÂÎÄÈÒÅËÜÍÎÑÒÈ Â MPI ÏÐÈËÎÆÅÍÈßÕ

192–197
(6)

Kharchenko V.S.,
Kovalenko A.A.,
Siora À.À.

GAP- AND HTT-BASED ANALYSIS OF SAFETY-CRITICAL SYSTEMS

GAP- ÒÀ HTT- ÀÍÀË²Ç ÊÐÈÒÈ×ÍÈÕ ÑÈÑÒÅÌ

GAP- È HTT- ÀÍÀËÈÇ ÊÐÈÒÈ×ÅÑÊÈÕ ÑÈÑÒÅÌ

198–204
(7)

Kotulski L.,
Szpyrka M.,
Sędziwy A.,
Grobler-Dębska K.

ON GENERATION OF COMPOSITE LABELLED TRANSITION SYSTEMS FOR ALVIS PASSIVE AGENTS

ÑÒÂÎÐÅÍÍß ÑÊËÀÄÍÈÕ ÐÎÇ̲×ÅÍÈÕ ÏÅÐÅÕ²ÄÍÈÕ ÑÈÑÒÅÌ ÄËß ÏÀÑÈÂÍÈÕ ÀÃÅÍҲ ALVIS

ÑÎÇÄÀÍÈÅ ÑËÎÆÍÎÉ ÐÀÇÌÅ×ÅÍÍÛÕ ÏÅÐÅÕÎÄÍÛÕ ÑÈÑÒÅÌ ÄËß ÏÀÑÑÈÂÍÛÕ ÀÃÅÍÒΠALVIS

205–211
(7)

Áåçïåêà êðèòè÷íèõ ³íôðàñòðóêòóð

Brezhnev E.V.,
Kharchenko V.S.

GRID SAFETY ANALYSIS BASED ON LINGUISTIC BAYESIAN BELIEF NETWORK

ÎÖ²ÍÊÀ ÁÅÇÏÅÊÈ ªÍÅÐÃÎÑÈÑÒÅÌÈ Ç ÂÈÊÎÐÈÑÒÀÍÍßÌ Ë²ÍòÑÒÈ×Íί ÁÀÉÅÑÎÂÑÜÊί ÌÅÐÅÆÈ ÄβÐÈ

ÎÖÅÍÊÀ ÁÅÇÎÏÀÑÍÎÑÒÈ ÝÍÅÐÃÎÑÈÑÒÅÌÛ Ñ ÈÑÏÎËÜÇÎÂÀÍÈÅÌ ËÈÍÃÂÈÑÒÈ×ÅÑÊÎÉ ÁÀÉÅÑÎÂÑÊÎÉ ÑÅÒÈ ÄÎÂÅÐÈß

212–218
(7)

Èâàí÷åíêî Î.Â.

SEMI-MARKOV MODELS FOR INFORMATION AND TECHNICAL STATE MONITORING OF CRITICAL INFRASTRUCTURES

ÍÀϲÂÌÀÐʲÂÑÜʲ ÌÎÄÅ˲ ÌÎͲÒÎÐÈÍÃÓ ²ÍÔÎÐÌÀÖ²ÉÍÎ-ÒÅÕͲ×ÍÎÃÎ ÑÒÀÍÓ ÊÐÈÒÈ×ÍÈÕ ²ÍÔÐÀÑÒÐÓÊÒÓÐ

ÏÎËÓÌÀÐÊÎÂÑÊÈÅ ÌÎÄÅËÈ ÌÎÍÈÒÎÐÈÍÃÀ ÈÍÔÎÐÌÀÖÈÎÍÍÎ-ÒÅÕÍÈ×ÅÑÊÎÃÎ ÑÎÑÒÎßÍÈß ÊÐÈÒÈ×ÅÑÊÈÕ ÈÍÔÐÀÑÒÐÓÊÒÓÐ

219–224
(6)

Êëèì Ã.².

Control system by ecological safety of environment

ÑÈÑÒÅÌÀ ÊÅÐÓÂÀÍÍß ÅÊÎËÎò×ÍÎÞ ÁÅÇÏÅÊÎÞ ÑÅÐÅÄÎÂÈÙÀ

Ñèñòåìà óïðàâëåíèÿ ýêîëîãè÷åñêîé áåçîïàñíîñòüþ ñðåäû

225–229
(5)

Øîñòàê È.Â.,
Äàâèäåíêî Â.Î.

COMPUTER DECISION MAKING SUPPORT ON THE BASIS OF SITUATIONAL MODELS IN THE TECHNOGENIC EMERGENCIES

ÊÎÌÏ’ÞÒÅÐÍÀ ï³äòðèìêà ïðèéíÿòòÿ ð³øåíü ÍÀ ÎÑÍγ ÑÈÒÓÀÖ³éí³É ÌÎÄÅ˳  óìîâàõ íàäçâè÷àéíèõ ñèòóàö³é òåõíîãåííîãî õàðàêòåðó

ÊÎÌÏÜÞÒÅÐÍÀß ÏÎÄÄÅÐÆÊÀ ÏÐÈÍßÒÈß ÐÅØÅÍÈÉ ÍÀ ÎÑÍÎÂÅ ÑÈÒÓÀÖÈÎÍÍÎÉ ÌÎÄÅËÈ Â ÓÑËÎÂÈßÕ ÒÅÕÍÎÃÅÍÍÛÕ ×ÐÅÇÂÛ×ÀÉÍÛÕ ÑÈÒÓÀÖÈÉ

230–235
(6)

Øîñòàê È.Â.,
Äàíîâà Ì.À.

INTEGRATED PROBLEMS OF COMPUTERIZATION OF FORECASTING SCIENTIFIC AND TECHNICAL DEVELOPMENT OF THE REGION

ÏÐÎÁËÅÌÈ ÊÎÌÏËÅÊÑÍί ÊÎÌÏ'ÞÒÅÐÈÇÀÖ²¯ ÏÐÎÖÅÑÓ ÏÐÎÃÍÎÇÓÂÀÍÍß ÍÀÓÊÎÂÎ-ÒÅÕͲ×ÍÎÃÎ ÐÎÇÂÈÒÊÓ ÐÅòÎÍÓ

ÏÐÎÁËÅÌÛ ÊÎÌÏËÅÊÑÍÎÉ ÊÎÌÏÜÞÒÅÐÈÇÀÖÈÈ ÏÐÎÖÅÑÑÀ ÏÐÎÃÍÎÇÈÐÎÂÀÍÈß ÍÀÓ×ÍÎ-ÒÅÕÍÈ×ÅÑÊÎÃÎ ÐÀÇÂÈÒÈß ÐÅÃÈÎÍÀ

236–240
(5)

Skatkov A.V.,
Skatkova N.A.,
Loviahin V.S.

DETERMINATION OF THE EVOLUTIONARY CRITICAL INFRASTRUCTURES SYSTEM CHARACTERISTICS ON THE BASIS OF THE SEMI-MARKOV THEORY

ÂÈÇÍÀ×ÅÍÍß ÑÈÑÒÅÌÍÈÕ ÕÀÐÀÊÒÅÐÈÑÒÈÊ ÅÂÎËÞÖ²¯ ÊÐÈÒÈ×ÍÈÕ ²ÍÔÐÀÑÒÐÓÊÒÓÐ ÍÀ ÎÑÍβ ÒÅÎв¯ ÍÀϲÂÌÀÐÊÎÂÑÜÊÈÕ ÏÐÎÖÅѲÂ

ÎÏÐÅÄÅËÅÍÈÅ ÑÈÑÒÅÌÍÛÕ ÕÀÐÀÊÒÅÐÈÑÒÈÊ ÝÂÎËÞÖÈÈ ÊÐÈÒÈ×ÅÑÊÈÕ ÈÍÔÐÀÑÒÐÓÊÒÓÐ ÍÀ ÎÑÍÎÂÅ ÒÅÎÐÈÈ ÏÎËÓÌÀÐÊÎÂÑÊÈÕ ÏÐÎÖÅÑÑÎÂ

241–246
(6)

Ñêàòêîâ À.Â.,
Òàðàñîâà À.Â.

VERSIONED SIMULATION OF STRUCTURALLY INHOMOGENEOUS TRANSPORTATION MANUFACTURING SYSTEMS

ÂÅÐѲÉÍÅ ÌÎÄÅËÞÂÀÍÍß ÑÒÐÓÊÒÓÐÍÎ ÍÅÎÄÍÎвÄÍÈÕ ÒÐÀÍÑÏÎÐÒÍÎ-ÂÈÐÎÁÍÈ×ÈÕ ÑÈÑÒÅÌ

ÂÅÐÑÈÎÍÍÎÅ ÌÎÄÅËÈÐÎÂÀÍÈÅ ÑÒÐÓÊÒÓÐÍÎ ÍÅÎÄÍÎÐÎÄÍÛÕ ÒÐÀÍÑÏÎÐÒÍÎ-ÏÐÎÈÇÂÎÄÑÒÂÅÍÍÛÕ ÑÈÑÒÅÌ

247–252
(6)

Tagarev T.D.,
Ivanova P.I.

MODELLING EXTREME EVENTS FOR THE PURPOSES OF SECURITY FORESIGHT

ÌÎÄÅËÞÂÀÍÍß ÅÊÑÒÐÈÌÀËÜÍÈÕ ÏÎÄ²É ÄËß ÏÐÎÃÍÎÇÓÂÀÍÍß ²ÍÔÎÐÌÀÖ²ÉÍί ÁÅÇÏÅÊÈ

ÌÎÄÅËÈÐÎÂÀÍÈÅ ÝÊÑÒÐÅÌÀËÜÍÛÕ ÑÎÁÛÒÈÉ ÄËß ÏÐÎÃÍÎÇÈÐÎÂÀÍÈß ÈÍÔÎÐÌÀÖÈÎÍÍÎÉ ÁÅÇÎÏÀÑÍÎÑÒÈ

253–259
(7)

Íàä³éí³ñòü òà åâîëþö³éí³ñòü ïðîãðàìíèõ ñèñòåì

Áîðîâèíñêèé À.Â.,
Ìèùåíêî Â.Î.

ON THE COMPLEXITY OF THE DEVELOPMENT OF INTELLECTUAL GRAPHIC INTERFACES FOR APPLICATIONS BASED ON DSM

ÑÊËÀÄͲÑÒÜ ÐÅÀ˲ÇÀÖ²¯ ²ÍÒÅËÅÊÒÓÀËÜÍÈÕ ÃÐÀÔ²×ÍÈÕ ²ÍÒÅÐÔÅÉѲ ÄËß ÏÐÎÃÐÀÌ, ÙÎ ÇÀÑÍÎÂÀͲ ÍÀ ÌÄÎ

ÑËÎÆÍÎÑÒÜ ÐÅÀËÈÇÀÖÈÈ ÈÍÒÅËËÅÊÒÓÀËÜÍÛÕ ÃÐÀÔÈ×ÅÑÊÈÕ ÈÍÒÅÐÔÅÉÑΠÄËß ÏÐÈËÎÆÅÍÈÉ, ÎÑÍÎÂÀÍÍÛÕ ÍÀ ÌÄÎ

260–265
(6)

Äàíèëèíà Ò.Ã.

ASSESSMENT QUALITY SOFTWARE ACCORDING INTERNATIONAL STANDARDS

ÎÖ²ÍÊÀ ßÊÎÑÒ² ÏÐÎÃÐÀÌÍÎÃÎ ÇÀÁÅÇÏÅ×ÅÍÍß Â²ÄÏβÄÍÎ ÄΠ̲ÆÍÀÐÎÄÍÈÕ ÑÒÀÍÄÀÐÒ³â

ÎÖÅÍÊÀ ÊÀ×ÅÑÒÂÀ ÏÐÎÃÐÀÌÌÍÎÃÎ ÎÁÅÑÏÅ×ÅÍÈß Â ÑÎÎÒÂÅÒÑÒÂÈÈ Ñ ÌÅÆÄÓÍÀÐÎÄÍÛÌÈ ÑÒÀÍÄÀÐÒÀÌÈ

266–269
(4)

Äóáíèöêèé Â.Þ.,
Êîáûëèí À.Ì.,
Õîäûðåâ À.È.

DETERMINATION OF CALCULATING ERROR OF RELIABILITY CALCULATION

ÂÈÇÍÀ×ÅÍÍß ÎÁ×ÈÑËÞÂÀËÜÍί ÏÎÕÈÁÊÈ ÐÎÇÐÀÕÓÍÊÓ ÍÀIJÉÍÎÑÒ²

ÎÏÐÅÄÅËÅÍÈÅ ÂÛ×ÈÑËÈÒÅËÜÍÎÉ ÏÎÃÐÅØÍÎÑÒÈ ÐÀÑרÒÀ ÍÀĨÆÍÎÑÒÈ

270–278
(9)

²âàíîâ Î.Â.,
Ïîìîðîâà Î.Â.

INTELLigence SUPPORT of Unified Communications system

²ÍÒÅËÅÊÒÓÀËÜÍÀ ϲÄÒÐÈÌÊÀ ÑÈÑÒÅÌÈ ÓͲԲÊÎÂÀÍÈÕ ÊÎÌÓͲÊÀÖ²É

ÈÍÒÅËËÅÊÒÓÀËÜÍÀß ÏÎÄÄÅÐÆÊÀ Ñèñòåìû óíèôèöèðîâàííûõ êîììóíèêàöèé

279–283
(5)

Ledyayev R.,
Ries B.,
Gorbenko A.

REACT: AN ARCHITECTURAL FRAMEWORK FOR THE DEVELOPMENT OF A SOFTWARE PRODUCT LINE FOR DEPENDABLE CRISIS MANAGEMENT SYSTEMS

REACT: ÀÐÕ²ÒÅÊÒÓÐÍÈÉ ÊÀÐÊÀÑ ÐÎÇÐÎÁÊÈ Ñ²ÌÅÉÑÒÂÀ ÏÐÎÃÐÀÌÍÈÕ ÏÐÎÄÓÊҲ ÄËß ÃÀÐÀÍÒÎÇÄÀÒÍÈÕ ÑÈÑÒÅÌ ÓÏÐÀÂ˲ÍÍß ÊÐÈÇÀÌÈ

REACT: ÀÐÕÈÒÅÊÒÓÐÍÛÉ ÊÀÐÊÀÑ ÐÀÇÐÀÁÎÒÊÈ ÑÅÌÅÉÑÒÂÀ ÏÐÎÃÐÀÌÌÍÛÕ ÏÐÎÄÓÊÒÎÂ ÄËß ÃÀÐÀÍÒÎÑÏÎÑÎÁÍÛÕ ÑÈÑÒÅÌ ÊÐÈÇÈÑ-ÌÅÍÅÄÆÌÅÍÒÀ

284–288
(5)

Ìî÷àëèí À.Å.

INCREASING THE RELIABILITY OF TRACER IMAGES PROCESSING SOFTWARE through the use of ALGORITHM OF Threshold filtering

ϲÄÂÈÙÅÍÍß ÍÀIJÉÍÎÑÒ² ÏÐÎÃÐÀÌÍÎÃÎ ÇÀÁÅÇÏÅ×ÅÍÍß îáðîáÊÈ òðàññåðíèõ ÇÎÁÐÀÆÅÍÜ ÇÀ ÐÀÕÓÍÎÊ ÂÈÊÎÐÈÑÒÀÍÍß ÀËÃÎÐÈÒÌÓ Ïîðîãîâî¿ Ô²ËÜÒÐÀÖ²¯

ÏÎÂÛØÅÍÈÅ ÍÀÄÅÆÍÎÑÒÈ ÏÐÎÃÐÀÌÌÍÎÃÎ ÎÁÅÑÏÅ×ÅÍÈß ÎÁÐÀÁÎÒÊÈ ÒÐÀÑÑÅÐÍÛÕ ÈÇÎÁÐÀÆÅÍÈÉ ÇÀ Ñ×ÅÒ ÈÑÏÎËÜÇÎÂÀÍÈß ÀËÃÎÐÈÒÌÀ ÏÎÐÎÃÎÂÎÉ ÔÈËÜÒÐÀÖÈÈ

289–293
(5)

Îäàðóùåíêî Î.Í.,
Ðóäåíêî À.À.,
Õàð÷åíêî Â.Ñ.

METHOD OF SOFTWARE RELIABILITY ESTIMATION TAKING INTO ACCOUNT SECONDARY FAULTS

ÌÅÒÎÄ ÎÖ²ÍÞÂÀÍÍß ÍÀIJÉÍÎÑÒ² ÏÐÎÃÐÀÌÍÈÕ ÇÀÑÎÁ²Â Ç ÓÐÀÕÓÂÀÍÍßÌ ÂÒÎÐÈÍÍÈÕ ÄÅÔÅÊÒ²Â

ÌÅÒÎÄ ÎÖÅÍÈÂÀÍÈß ÍÀÄÅÆÍÎÑÒÈ ÏÐÎÃÐÀÌÌÍÛÕ ÑÐÅÄÑÒÂ Ñ Ó×ÅÒÎÌ ÂÒÎÐÈ×ÍÛÕ ÄÅÔÅÊÒÎÂ

294–300
(7)

Òåõíîëî㳿 Ada òà áàãàòîâåðñ³éíèé êîìï’þòèíã

Ëèòâèíîâ Ä.Í.,
Ìèùåíêî Â.Î.

APPLYING ENERGETIC METRICS TO EVALUATION OF USING ASIS AND OTHER SIMILAR TASKS

ÇÀÑÒÎÑÓÂÀÍÍß ÅÍÅÐÃÅÒÈ×ÍÈÕ ÌÅÒÐÈÊ ÄËß ÎÖ²ÍÊÈ ÂÈÊÎÐÈÑÒÀÍÍß ASIS ²  ²ÍØÈÕ ÏÎIJÁÍÈÕ ÇÀÄÀ×ÀÕ

ÏÐÈÌÅÍÅÍÈÅ ÝÍÅÐÃÅÒÈ×ÅÑÊÈÕ ÌÅÒÐÈÊ ÄËß ÎÖÅÍÊÈ ÈÑÏÎËÜÇÎÂÀÍÈß ASIS È Â ÄÐÓÃÈÕ ÏÎÄÎÁÍÛÕ ÇÀÄÀ×ÀÕ

301–306
(6)

Ôóíêö³îíàëüíà áåçïåêà ³íôîðìàö³éíî-êåðóþ÷èõ ñèñòåì

Êîðòóíîâ Â.È.,
Èëþøêî Â.Ì.,
Ìàçóðåíêî À.Â.

MODELING ALGORITHM OF THE CONTROLLED MARKOV CHAIN

ÏÐÎÁËÅÌÈ ÍÀIJÉÍÎÑÒ² ÏÐÎÃÐÀÌÍÎ-ÀÏÀÐÀÒÍÈÕ ÇÀÑÎÁ²Â ÁÅÇϲËÎÒÍÈÕ ÑÈÑÒÅÌ

ÏÐÎÁËÅÌÛ ÍÀÄÅÆÍÎÑÒÈ ÏÐÎÃÐÀÌÌÍÎ-ÀÏÏÀÐÀÒÍÛÕ ÑÐÅÄÑÒÂ ÁÅÑÏÈËÎÒÍÛÕ ÑÈÑÒÅÌ

307–312
(6)

Ìàíæîñ Þ.Ñ.

USING DIMENSIONAL ANALYSIS FOR IMPROOVING OF I&C SYSTEM’S FUNCTIONAL SAFETY

ÂÈÊÎÐÈÑÒÀÍÍß ÀÍÀ˲ÇÓ ÐÎÇ̲ÐÍÎÑÒÅÉ ÄËß Ï²ÄÂÈÙÅÍÍß Ð²ÂÍß ÔÓÍÊÖ²ÎÍÀËÜÍί ÁÅÇÏÅÊÈ I&C ÑÈÑÒÅÌ

ÈÑÏÎËÜÇÎÂÀÍÈÅ ÀÍÀËÈÇÀ ÐÀÇÌÅÐÍÎÑÒÅÉ ÄËß ÏÎÂÛØÅÍÈß ÔÓÍÊÖÈÎÍÀËÜÍÎÉ ÁÅÇÎÏÀÑÍÎÑÒÈ I&C ÑÈÑÒÅÌ

313–318
(6)

Shmelova T.F.,
Sikirda Y.V.

ANALYSIS OF HUMAN-OPERATOR'S DECISION-MAKING IN AIR NAVIGATION SYSTEM

ÀÍÀË²Ç ÏÐÈÉÍßÒÒß Ð²ØÅÍÜ ËÞÄÈÍÎÞ-ÎÏÅÐÀÒÎÐÎÌ Â ÀÅÐÎÍÀ²ÃÀÖ²ÉÍ²É ÑÈÑÒÅ̲

ÀÍÀËÈÇ ÏÐÈÍßÒÈß ÐÅØÅÍÈÉ ×ÅËÎÂÅÊÎÌ-ÎÏÅÐÀÒÎÐÎÌ Â ÀÝÐÎÍÀÂÈÃÀÖÈÎÍÍÎÉ ÑÈÑÒÅÌÅ

319–324
(6)

Òðóá÷àíèíîâ Ñ.À.

OPERATING RELIABILITY ASSESSMENT OF DETECTORS USED IN THE NEUTRON FLUX MONITORING EQUIPMENT

ÎÖ²ÍÊÀ ÅÊÑÏËÓÀÒÀÖ²ÉÍί ÍÀIJÉÍÎÑÒ² ÄÅÒÅÊÒÎвÂ, ÙÎ ÂÈÊÎÐÈÑÒÎÂÓÞÒÜÑß Â ÀÏÀÐÀÒÓв ÊÎÍÒÐÎËÞ ÍÅÉÒÐÎÍÍÎÃÎ ÏÎÒÎÊÓ

ÎÖÅÍÊÀ ÝÊÑÏËÓÀÒÀÖÈÎÍÍÎÉ ÍÀÄÅÆÍÎÑÒÈ ÄÅÒÅÊÒÎÐÎÂ, ÈÑÏÎËÜÇÓÅÌÛÕ Â ÀÏÏÀÐÀÒÓÐÅ ÊÎÍÒÐÎËß ÍÅÉÒÐÎÍÍÎÃÎ ÏÎÒÎÊÀ

325–329
(5)

 

Øàíîâí³ ÷èòà÷³!

Íàóêîâî-òåõí³÷íèé æóðíàë “ÐÀIJÎÅËÅÊÒÐÎÍͲ ² ÊÎÌÏ'ÞÒÅÐͲ ÑÈÑÒÅÌÈ
âêëþ÷åíèé äî ïåðåë³êó íàóêîâèõ âèäàíü, â ÿêèõ ìîæóòü äðóêóâàòèñÿ îñíîâí³ ðåçóëüòàòè äèñåðòàö³éíèõ ðîá³ò
(äèâ. ïîñòàíîâó ïðåçè䳿 ÂÀÊ Óêðà¿íè ¹1-05/3 â³ä 8.07.2009)

 

Ðåôåðàòèâíà ³íôîðìàö³ÿ çáåð³ãàºòüñÿ:

– ó çàãàëüíîäåðæàâí³é ðåôåðàòèâí³é áàç³ äàíèõ «Óêðà¿í³êà íàóêîâà» òà ïóáë³êóºòüñÿ ó â³äïîâ³äíèõ òåìàòè÷íèõ ñåð³ÿõ ÓÐÆ «Äæåðåëî» (â³ëüíèé îí-ëàéíîâèé äîñòóï äî ðåñóðñ³â íà Web-ñåðâåð³ http://www.nbuv.gov.ua);

– ó ðåôåðàòèâí³é áàç³ äàíèõ Âñåðîñ³éñüêîãî ³íñòèòóòó íàóêîâî¿ ³ òåõí³÷íî¿ ³íôîðìàö³¿ (²ͲҲ) Ðîñ³éñüêî¿ àêàäå쳿 íàóê ³ ïóáë³êóºòüñÿ ó â³äïîâ³äíèõ òåìàòè÷íèõ ñåð³ÿõ ÐÆ (â³ëüíèé îí-ëàéíîâèé äîñòóï äî ðåñóðñ³â íà Web-ñåðâåð³ http://www.viniti.ru).