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Cognitive Radio for Smart Grid: Performance Analysis, Improvement and Evaluation

Thesis Info

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External Link

Author

Khan, Athar Ali

Program

PhD

Institute

COMSATS University Islamabad

City

Islamabad

Province

Islamabad.

Country

Pakistan

Thesis Completing Year

2020

Thesis Completion Status

Completed

Subject

Electrical Engineering

Language

English

Link

http://prr.hec.gov.pk/jspui/bitstream/123456789/12148/1/Athar%20ali%20Khan%20Electrical%20engg%202020%20comsats%20isb%20prr.pdf

Added

2021-02-17 19:49:13

Modified

2024-03-24 20:25:49

ARI ID

1676727715543

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Communication system has a key position in smart grid (SG). Smooth operation among different functional blocks of smart grid, i.e. generation, transmission, distribution, utility, and consumers require reliable and efficient exchange of information. Hybrid architecture in smart grid, in the form of Advanced Metering Infrastructure (AMI) consists of gateways/access points and smart meters. AMI network facilitates consumers to take benefits of real-time pricing, demand side management, load scheduling and upgrading the software updates through access points to multiple smart meters without visiting every place. Information sharing can take place in the shape of readings from meters to AMI, from meters to utility and from AMI to utility. This information exchange is either scheduled, on-demand or in the form of mass transfer. Information exchange in the form of time of use (TOU) and real-time pricing also occurs from utility to meters. Broadcasting is one possible solution in these scenarios for information exchange. Data broadcasting in AMI networks can be achieved using many wired and wireless communication technologies including Zigbee, Wireless LAN, Powerline Communication (PLC), WiMAX 802.16, Cellular, and Digital Subscriber Lines (DSL). But these technologies either have limited range or can be used for licensed users only. For these reasons, Cognitive Radio Networks (CRNs) are one possible solution that provides large data transmission utilizing available spectrum resources from licensed and unlicensed bands. Broadcasting is challenging in CRNs due to Licensed/Primary User (PU) activity, availability of multiple channels, and channel diversity. Therefore, PU protection must be provided at all cost and data transmission should be quick and reliable for a smooth operation. In this thesis, two novel reliable schemes are proposed, i.e., PRobability-based Broadcasting scheme for CR-based Smart Grid (PRB-CRSG) and Area-based Broadcasting scheme for CR-based Smart Grid (ARB-CRSG) specifically designed for AMI networks. These schemes provide reliable data to smart meters with sufficient PU protection. Both these schemes have been compared with two flooding techniques, i.e., "Key Policy Attribute Based Encryption" (KP-ABE) and "Key Management Scheme" (KMS). Simulation in NS-2 validates these schemes as a viable solution in cognitive radio-based smart grid systems.
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The Qur'an has innumerable features. Its teachings serve as blessing and guidancefor the whole mankind. It provides complete code oflifefor man. It catersfor both life in the present world and that in the hereafter. The Qur'an is regarded as inimitable due to the accuracy ofscientific information presented 1400 years ago and only recently proven or discovered, as well as for its unprecedented Arabic literary style of highest standard. This article discusses extraordinary features of the Qur'an as explained and highlighted by majority of commentators of the Qur’an in their commentaries of the Qur'an.

Sewage Treatment by an Upflow Anaerobic Sludge Blanket Reactor Uasb under Subtropical Conditions

The upflow anaerobic sludge blanket reactors seeded with cow dung manure and activated sludge of a dairy wastewater treatment plant, termed as UASBCD and UASBASDIT, were used to treat medium strength raw domestic wastewater. The start-up of UASBCD reactor required a period of 120 days. In case of UASBASDIT reactor, sludge bet was stabilized in a period of 80 days. The performance of both reactors to treat wastewater was enhanced with an increase in the sludge age and temperature. Under psychrophilic temperature (17 OC) and at early sludge age (60 days), COD and BOD removal by the reactors was in the range of 57-62% and 61- 66%, respectively. However, COD and BOD removal efficiency of the reactors elevated to the range of 79-81% and 77-83%, respectively at sludge age of 150 days and temperature of 30 OC. In short, overall performance of both reactors was optimal at sludge age ranging from 120-150 days and temperature varying between 25-30 O C. However, overall performance of UASBCD reactor was always relatively better than UASBASDIT reactor due to better granulation, biomass growth and settling characteristics of sludge with time in the former reactor. Both reactors were re-started after a long shutdown period of 12 months, and operated at HRT of 12 hrs and 30 OC temperature. The reactors restored normal performance in a time period of 30 days. Post-treatment of UASB wastewater was accomplished in order to improve the quality of wastewater in accordance with the permissible limits for irrigation water. The application of ozone, UV irradiation and H2O2 at their optimal exposure time (ozonation time varying between 26-30 min; UV irradiation time of 8-15 min) and dose (H2O2 dose in the range of 280-336 mg/L) showed 99.9% elimination of pathogens (total coliform, fecal coliform and E.coli) in wastewaters of both reactors. The disinfection efficiency of combined systems (O3/UV; H2O2/UV; O3/H2O2) was, however, spectacular. The application of these systems showed 99.9% removal of pathogens at very short contact time and less dose as compared to time and dose required in their individual application. There was no re-growth in wastewater samples disinfected at optimal contact time (ozonation time of 25 min; UV irradiation for 15 min) and maximum dose (H2O2 dose of 336 mg/L) in the presence of nutrients during a time period of 21 days. However, underdozed samples and wastewater samples exposed for inadequate time period showed re-growth, which was a function of nutrient content, temperature and light, and regrowth of pathogens was substantially increased with increasing temperature and adding nutrients.