Lower Level Protocol (LLP) when discussing the transmission of the HL7 Messages. 1 HL7 eLearning Course Data Exchange Standards • Lower Layer Protocol (LLP) is the most common mechanism for sending unencrypted HL7 message over a local area network‚ such as those found in a hospital. • Lower Level Protocol (LLP) sometimes referred to as minimal Lower Level Protocol (MLLP)‚ is the absolute standard for transmitting HL7 messages via TCP/IP (transmission control protocol & internet protocol). •
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K L UNIVERSITY DEPARTMENT OF ELECTRICAL AND ELECTRONICS ENGINEERING CERTIFICATE Certified that this a bonafide record of the seminar work “ SMART GRID AND VISION FOR INDIA” by KODANDA RAM R B P U S B (Roll:12206109)‚ submitted to the faculty of Electrical and Electronics Engineering‚ in partial fulfillment of the requirements for the award of degree in MASTER OF TECHNOLOGY in Power Systems from K L UNIVERSITY‚ Greenfields‚ Vaddeswaram. Dr.G.R.K. MURTHY Ph.d Dr.M.VENU GOPALA RAO Ph
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company’s power production and transmission facilities. The Early Bird continuously calculates the marginal cost of delivering additional kilowatts of electricity to Southern Company customers anywhere in the company’s service area; then‚ as electricity demand rises or falls at points throughout the system‚ Early Bird transmits “raise” or “lower” impulses to the company’s generating units and routes the correct amount of electricity along the most economical transmission path to the end user. Periodically
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Good Governance is Key to Solving Pakistan’s Energy Crisis By Majyd Aziz In Pakistan’s energy scenario‚ the chickens have‚ literally‚ come home to roost. Years of indecisiveness coupled with the hackneyed assertions that Pakistan has more electricity than required has manifested into a situation where the nation’s foundations are now shaking. New words have entered the domestic lexicon and even the uninitiated are recognising and understanding the ramifications of these new or oft-used words
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construction to overcome the power shortages and meet the growing energy requirements in the country. However‚ the sector has been encountering problems on account of inadequate / depleting conventional fuel resources‚ slippages in capacity addition‚ transmission / open access constraints and high Aggregate Technical & Commercial (AT & C) losses in the country. Since the formulation of Electricity Act 2003‚ Government of India (GoI) has been taking several initiatives and announced various regulations to
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the power system so as to have minimum impact on the reliable and safe supply of electricity. Stability of power system is one of the most important area of power system operation. Loss of stability (loss of synchronism) can lead to outages of transmission lines‚ loss of loads‚ cascading failures‚ and eventually to black-out. This paper discusses power-system instability and the importance of fast fault-clearing performance to aid in reliable production of power. Keywords—power system‚ steady-state
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reveals the HVDC Light DC transmission technology.It is used in underground transmission and moreover provides point to point transmission.HVDC Light requires only two elements namely a converter station and a pair of ground cables. The new HVDC Light cable is an extruded‚ single-pole cable. It is ideally suited for feeding power into growing metropolitan areas from a suburban substation. HVDC Light is inherent environmentally friendly cables instead of OH transmission lines. Virtually no magnetic
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& SYLLABUS OF MASTER OF TECHNOLOGY (M.TECH) In Electrical Engineering Course Structure First Year First Semester Paper Code Subject MFE1 Machine Drives MFE2 Power Electronic Converter MFE3 Control System MFE4 EHV Transmission Syllabus MFE1 : MACHINE DRIVES –I 1. CHARACTERISTICS OF THE ELECTRIC MOTORS Introduction‚ Characteristics Of Dc Motors‚ Characteristic Of Three-Phase Induction Motor ‚ Variation Of Applied Voltage‚ Pole Change Motors‚ Slip Power Recovery
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automation and distributed intelligent‚ be able to local interact the load and the power‚ adhere to customer centric. Obviously‚ these definitions has been formulated for the future of power industry mainly focusing on world today’s energy generation‚ transmission‚ distribution limitation & changing consumer trends. Recently world has observed a series of blackout‚ partial power failure and this compelled the world’s nations to go for an ideal grid system that is smart enough to face such kind of challenges
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HVDC TRANSMISSION H-HIGH V-VOLTAGE D-DIRECT C-CURRENT 1 WHY HVDC ? BULK POWER TRANSMISSION WITHLOWER LINE LOSSES AS NO REACTIVE POWER TRANSFER TAKES PLACE CONNECT TWO ASYNCHRONOUS SYSTEM. PROVIDES SYSTEM STABILITY. CONTROLABILITY OF POWER FLOW AT HIGH SPEED. LESS RIGHT OF WAY FOR TRANSMISSION LINES. NO CONTRIBUTION TO SHORT CIRCUIT LEVEL OF THE AC BUS CONNECTED. NO CHARGING CURRENT TO DIMINISH THE USEFUL CAPACITY OF THE LINE. DISTANCE IS NOT LIMITED BY STABILITY POINT OF VIEW. 2 BREAKEVEN
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