Development and research of flexible programmable architecture of electronic schemes

 
PIIS086858860002836-1-1
DOI
Publication type Article
Status Published
Authors
Affiliation: Institute of Design and Technological Informatics
Address: Russian Federation
Journal nameNauchnoe priborostroenie
EditionVolume 28 Issue 4
Pages146-150
Abstract

The goal is reduction of expenses on the tests and developing of electronic schemes. The solved tasks are those: modeling of electronic schemes, reliability control, search of fails, search and replacement of failed elements. Research method is modeling. The new flexible programmable architecture of electronic schemes (ES) is developed. The flexible architecture of the electronic scheme allows to program and change interconnection links between elements during the operation, without ES switching off. Additional elements – switchers are appended into the scheme. All ES elements inputs and outputs are connected to switchers. Switchers are connected with each other. Switchers have random access memory in which the information on the interconnection links of elements of the scheme is stored. The switching architecture is applied to the control of reliability of electronic schemes for the first time.

Keywordsflexible programmable architecture, fail, operating state, failed state, tests of the electronic scheme
Received03.12.2018
Publication date03.12.2018
Number of characters831
Cite   Download pdf To download PDF you should sign in
Размещенный ниже текст является ознакомительной версией и может не соответствовать печатной

views: 1014

Readers community rating: votes 0

1. Kalyaev A.V. Mnogoprocessornye sistemy s programmiruemoj arhitekturoj [The multiprocessor systems with programmable architecture]. Moscow, Radio i svyaz' Publ., 1984. 240 p. (In Russ.).

2. Kalyaev I.A., Levin I.I., Semernikov E.A., Shmojlov V.I. Rekonfiguriruemye mul'tikonvejernye vychislitel'nye struktury [Reconfigurable multiconveyor computing structures]. Rostov-on-Don, SSC RAS Publ., 2008. 392 p. (In Russ.).

3. Knyazkov V.S., Vasin L.A. Mnogofunkcional'nyj kommutator [Multipurpose switchboard]. Patent RF no. 2139567. Prioritet 11.06.1997, publ. 10.10.1999. 3 p. (In Russ.).

4. Sukhanova N.V. [Ensuring of fault tolerance of automated control system hardware]. Vestnik MSTU "STANKIN" [Bulletin of MSTU "STANKIN"], 2017, vol. 41, no. 2, pp. 79–83. (In Russ.).

5. Sukhanova N.V. [Application of switching structure for ensuring fault tolerance of hardware of computing systems]. Vestnik MSTU "STANKIN" [Bulletin of MSTU "STANKIN"], 2017, vol. 42, no. 3, pp. 105–110. (In Russ.).

6. Kabak I.S., Sukhanova N.V. et al. Sposob povysheniya otkazoustojchivosti skhemy i otkazoustojchivaya skhema dlya ego realizacii [Way of increase in fault tolerance of the scheme and the failure-safe scheme for his realization]. Patent RF no. 2631987. Prioritet 01.02.2016, publ. 29.09.2017, bull. no. 28. 3 p. (In Russ.).

Система Orphus

Loading...
Up