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The following presentation is a quick look into the ongoing “Passion Campaign” started by The College of Saint Rose career center. To date, I have presented our marketing campaign and two conferences.
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A glimpse at resume and cover letter development.
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A sudden loss of power will disrupt most business operations, it is not only total mains failures or ‘blackouts’ which can trigger devastating effects. Many electrical loads, for example computer systems, are equally susceptible to power sags, brown-outs, black-outs, power spikes and surges, noise and radio frequency interference, and supply frequency changes. Such loads are often referred to as ‘critical loads’, partly because their continuous operation is fundamental to the functioning of the business, and also because they require a more stable and reliable power source than that generally offered by the utility mains supply in order to guarantee their correct function. Critical Load Applications The numbers and types of load falling into the ‘critical’ category are rapidly expanding as an ever increasing range of microprocessor-based equipment enters both the industrial and commercial marketplaces. This is typified by the growth of on-line transaction processing and Ecommerce where 24 hour trading demands absolute power quality with zero downtime. Among typical critical loads are: • Computers – e.g. data processing and control systems. • Industrial process equipment – e.g. precision manufacturing. • Medical equipment – e.g. life support and monitoring systems. • Telecommunications network equipment – e.g. PABX. • Point of sales (POS) terminals – e.g retailing environment. • On-line business transactions – e.g. internet shopping. The effects of an inadequate supply to a critical load can include: • Cessation of the business process – i.e. a total inability to trade and/or communicate • data loss or corruption due to software crashing • Expensive hardware failure including component damage – e.g. due to power sags, spikes etc. • Production loss due to incorrect operation of a manufacturing process and possible production equipment damage • Inappropriate control system operation • Lost business due to failed POS or telecommunications equipment • Possible time penalty paid to repair/reset affected systems
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Ministry of New & Renewable Energy, Govt of India
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JacobMouldsASMedia
The following presentation is a quick look into the ongoing “Passion Campaign” started by The College of Saint Rose career center. To date, I have presented our marketing campaign and two conferences.
The College Of Saint Rose Passion Campaign
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A glimpse at resume and cover letter development.
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A sudden loss of power will disrupt most business operations, it is not only total mains failures or ‘blackouts’ which can trigger devastating effects. Many electrical loads, for example computer systems, are equally susceptible to power sags, brown-outs, black-outs, power spikes and surges, noise and radio frequency interference, and supply frequency changes. Such loads are often referred to as ‘critical loads’, partly because their continuous operation is fundamental to the functioning of the business, and also because they require a more stable and reliable power source than that generally offered by the utility mains supply in order to guarantee their correct function. Critical Load Applications The numbers and types of load falling into the ‘critical’ category are rapidly expanding as an ever increasing range of microprocessor-based equipment enters both the industrial and commercial marketplaces. This is typified by the growth of on-line transaction processing and Ecommerce where 24 hour trading demands absolute power quality with zero downtime. Among typical critical loads are: • Computers – e.g. data processing and control systems. • Industrial process equipment – e.g. precision manufacturing. • Medical equipment – e.g. life support and monitoring systems. • Telecommunications network equipment – e.g. PABX. • Point of sales (POS) terminals – e.g retailing environment. • On-line business transactions – e.g. internet shopping. The effects of an inadequate supply to a critical load can include: • Cessation of the business process – i.e. a total inability to trade and/or communicate • data loss or corruption due to software crashing • Expensive hardware failure including component damage – e.g. due to power sags, spikes etc. • Production loss due to incorrect operation of a manufacturing process and possible production equipment damage • Inappropriate control system operation • Lost business due to failed POS or telecommunications equipment • Possible time penalty paid to repair/reset affected systems
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Ministry of New & Renewable Energy, Govt of India
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Projections on the Latino vote in the 2012 Presidential Election by the National Association of Latino Elected and Appointed Officials (NALEO) Educational Fund.
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The US Food and Drug Administration (FDA) released additional draft guidance encompassing 31 new drugs including Dexmethylphenidate Hydrochloride
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The modern power system around the world has grown in complexity of interconnection and power demand. The focus has shifted towards enhanced performance, increased customer focus, low cost, reliable and clean power. In this changed perspective, scarcity of energy resources, increasing power generation cost, environmental concern necessitates optimal economic dispatch. In reality power stations neither are at equal distances from load nor have similar fuel cost functions. Hence for providing cheaper power, load has to be distributed among various power stations in a way which results in lowest cost for generation. Practical economic dispatch (ED) problems have highly non-linear objective function with rigid equality and inequality constraints. Particle swarm optimization (PSO) is applied to allot the active power among the generating stations satisfying the system constraints and minimizing the cost of power generated. The viability of the method is analyzed for its accuracy and rate of convergence. The economic load dispatch problem is solved for three and six unit system using PSO and conventional method for both cases of neglecting and including transmission losses. The results of PSO method were compared with conventional method and were found to be superior. The conventional optimization methods are unable to solve such problems due to local optimum solution convergence. Particle Swarm Optimization (PSO) since its initiation in the last 15 years has been a potential solution to the practical constrained economic load dispatch (ELD) problem. The optimization technique is constantly evolving to provide better and faster results. While writing the report on our project seminar, we were wondering that Science and smart technology are as ever expanding field and the engineers working hard day and night and make the life a gift for us
Particle Swarm Optimization Application In Power System
Particle Swarm Optimization Application In Power System
Ministry of New & Renewable Energy, Govt of India
Industrial revolution worldwide. It has resulted in social changes too and raised the standard of living we examine a future distribution system capable of solving problems caused by the connection of numerous distributed generators. A supervisory-control-and-data-acquisition (SCADA) system for this distribution system should be economical, flexible, and reliable, and should execute a real-time process. In this seminar report, we propose a SCADA system using mobile agents for flexibility. In addition, we show two types of communication protocols that make agent migration more fault-tolerant, and perform experiments where the SCADA system executes earth fault protection within the required time. These results indicate that the SCADA system based on our proposed technologies should be capable of fulfilling the real-time processing requirement. While writing the report on my seminar, I was wondering that Science and technology are as ever expanding field and the engineers working hard day and night and make the life a gift for us
A SCADA System Using Mobile Agents for a Next-Generation Distribution System
A SCADA System Using Mobile Agents for a Next-Generation Distribution System
Ministry of New & Renewable Energy, Govt of India
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The US Food and Drug Administration (FDA) released additional draft guidance encompassing 31 new drugs including Dexmethylphenidate Hydrochloride
FDA Guidelines for Dexmethylphenidate
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Bedidith Gutierrez
The modern power system around the world has grown in complexity of interconnection and power demand. The focus has shifted towards enhanced performance, increased customer focus, low cost, reliable and clean power. In this changed perspective, scarcity of energy resources, increasing power generation cost, environmental concern necessitates optimal economic dispatch. In reality power stations neither are at equal distances from load nor have similar fuel cost functions. Hence for providing cheaper power, load has to be distributed among various power stations in a way which results in lowest cost for generation. Practical economic dispatch (ED) problems have highly non-linear objective function with rigid equality and inequality constraints. Particle swarm optimization (PSO) is applied to allot the active power among the generating stations satisfying the system constraints and minimizing the cost of power generated. The viability of the method is analyzed for its accuracy and rate of convergence. The economic load dispatch problem is solved for three and six unit system using PSO and conventional method for both cases of neglecting and including transmission losses. The results of PSO method were compared with conventional method and were found to be superior. The conventional optimization methods are unable to solve such problems due to local optimum solution convergence. Particle Swarm Optimization (PSO) since its initiation in the last 15 years has been a potential solution to the practical constrained economic load dispatch (ELD) problem. The optimization technique is constantly evolving to provide better and faster results. While writing the report on our project seminar, we were wondering that Science and smart technology are as ever expanding field and the engineers working hard day and night and make the life a gift for us
Particle Swarm Optimization Application In Power System
Particle Swarm Optimization Application In Power System
Ministry of New & Renewable Energy, Govt of India
Industrial revolution worldwide. It has resulted in social changes too and raised the standard of living we examine a future distribution system capable of solving problems caused by the connection of numerous distributed generators. A supervisory-control-and-data-acquisition (SCADA) system for this distribution system should be economical, flexible, and reliable, and should execute a real-time process. In this seminar report, we propose a SCADA system using mobile agents for flexibility. In addition, we show two types of communication protocols that make agent migration more fault-tolerant, and perform experiments where the SCADA system executes earth fault protection within the required time. These results indicate that the SCADA system based on our proposed technologies should be capable of fulfilling the real-time processing requirement. While writing the report on my seminar, I was wondering that Science and technology are as ever expanding field and the engineers working hard day and night and make the life a gift for us
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Ministry of New & Renewable Energy, Govt of India
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NARAB II
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A SCADA System Using Mobile Agents for a Next-Generation Distribution System
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