IMPLEMENTATION OF SELF-TESTING AND SELF-REPAIRING ANALOG CIRCUITS ON FIELD PROGRAMMABLE ANALOG ARRAY PLATFORMS

This thesis presents a methodology and experiments on implementing self-healing analog circuits on a hardware platform that consists of microcontroller, flash memory, and a switched-capacitor based field programmable analog array (FPAA) device. By taking advantage of FPAA programmability and the ava...

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Main Author: Mudhireddy, Venkata Naresh
Format: Others
Published: OpenSIUC 2010
Online Access:https://opensiuc.lib.siu.edu/theses/296
https://opensiuc.lib.siu.edu/cgi/viewcontent.cgi?article=1303&context=theses
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spelling ndltd-siu.edu-oai-opensiuc.lib.siu.edu-theses-13032018-12-20T04:34:43Z IMPLEMENTATION OF SELF-TESTING AND SELF-REPAIRING ANALOG CIRCUITS ON FIELD PROGRAMMABLE ANALOG ARRAY PLATFORMS Mudhireddy, Venkata Naresh This thesis presents a methodology and experiments on implementing self-healing analog circuits on a hardware platform that consists of microcontroller, flash memory, and a switched-capacitor based field programmable analog array (FPAA) device. By taking advantage of FPAA programmability and the availability of redundant resources, the microcontroller programs the FPAA circuit into different circuit configurations to perform online testing. The microcontroller also monitors the online testing data to determine if circuit faults occur. Once a circuit fault is detected, the FPAA circuit will be reconfigured to replace the faulty circuit block by a redundant resource to achieve self-healing. Experiments results are presented to show the effectiveness of the fault detection method and demonstrate the feasibility of self-healing operations. 2010-12-01T08:00:00Z text application/pdf https://opensiuc.lib.siu.edu/theses/296 https://opensiuc.lib.siu.edu/cgi/viewcontent.cgi?article=1303&context=theses Theses OpenSIUC
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format Others
sources NDLTD
description This thesis presents a methodology and experiments on implementing self-healing analog circuits on a hardware platform that consists of microcontroller, flash memory, and a switched-capacitor based field programmable analog array (FPAA) device. By taking advantage of FPAA programmability and the availability of redundant resources, the microcontroller programs the FPAA circuit into different circuit configurations to perform online testing. The microcontroller also monitors the online testing data to determine if circuit faults occur. Once a circuit fault is detected, the FPAA circuit will be reconfigured to replace the faulty circuit block by a redundant resource to achieve self-healing. Experiments results are presented to show the effectiveness of the fault detection method and demonstrate the feasibility of self-healing operations.
author Mudhireddy, Venkata Naresh
spellingShingle Mudhireddy, Venkata Naresh
IMPLEMENTATION OF SELF-TESTING AND SELF-REPAIRING ANALOG CIRCUITS ON FIELD PROGRAMMABLE ANALOG ARRAY PLATFORMS
author_facet Mudhireddy, Venkata Naresh
author_sort Mudhireddy, Venkata Naresh
title IMPLEMENTATION OF SELF-TESTING AND SELF-REPAIRING ANALOG CIRCUITS ON FIELD PROGRAMMABLE ANALOG ARRAY PLATFORMS
title_short IMPLEMENTATION OF SELF-TESTING AND SELF-REPAIRING ANALOG CIRCUITS ON FIELD PROGRAMMABLE ANALOG ARRAY PLATFORMS
title_full IMPLEMENTATION OF SELF-TESTING AND SELF-REPAIRING ANALOG CIRCUITS ON FIELD PROGRAMMABLE ANALOG ARRAY PLATFORMS
title_fullStr IMPLEMENTATION OF SELF-TESTING AND SELF-REPAIRING ANALOG CIRCUITS ON FIELD PROGRAMMABLE ANALOG ARRAY PLATFORMS
title_full_unstemmed IMPLEMENTATION OF SELF-TESTING AND SELF-REPAIRING ANALOG CIRCUITS ON FIELD PROGRAMMABLE ANALOG ARRAY PLATFORMS
title_sort implementation of self-testing and self-repairing analog circuits on field programmable analog array platforms
publisher OpenSIUC
publishDate 2010
url https://opensiuc.lib.siu.edu/theses/296
https://opensiuc.lib.siu.edu/cgi/viewcontent.cgi?article=1303&context=theses
work_keys_str_mv AT mudhireddyvenkatanaresh implementationofselftestingandselfrepairinganalogcircuitsonfieldprogrammableanalogarrayplatforms
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