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11

KUSHALPRATAP


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During the last decade there has been a steep growth in the demand of electric power in India and a phenomenal increase in the number of consumers of all categories, particularly in the agricultural and industrial sectors. The generation and transmission capacities have not kept pace, In general, with the load- demand necessitating the generators to be loaded to their maximum capacity most of the time. Due to insufficient spinning reserves, any emergency outage of major generating unit of the tripping of a tie-line on fault leads to frequency sinking, over- loading and cascade tripping of generators. The low frequency condition is generally accompanied by low voltage unless elaborate arrangements like field forcing, etc. are provided in the generators. This is further aggravated due to the lowering of transient stable limits particular where long transmission lines are involved. The system is likely to separate out at an undesirable, into two segments with large disproportional in the generation and load demand. Frequent operation of the system at low frequency also results in cumulative damage to the generating units, particularly to the low pressure-stage blades of steam turbines and in their ultimate mechanical breakdown. The possibility if inter-connection breakdown, limitation of spinning reservation and the dangers of under-frequency operation indicate that properly co- ordinated load- shedding scheme is essential for adequate system protection. Although load shedding involves a deliberate service interruption, something which one would always like to avoid, it is invaluable to system security since it would become effective only when there is no other remedy available to save the system. The frequency of AC voltage of power supply network is normally maintained constant at the declared level within statutory limits of variation. In conditions of emergency plant outage, excessive overload on the network, short-circuit in the system etc. A large variation in frequency may occur. Excessive or rapid variation of frequency may cause a variety of damage to generating plant, damage to industrial machinery, burn-out of domestic appliances and dislocation in traffic signalling system, etc. During the last decade there has been a steep growth in the demand of electric power in India and a phenomenal increase in the number of consumers of all categories, particularly in the agricultural and industrial sectors. The generation and transmission capacities have not kept pace, in general, with the load- demand necessitating the generators to be loaded to their maximum capacity most of the time. Due to insufficient spinning reservation, any emergency outage of major generating until of the tripping of a tie-line on fault leads to frequency sinking, over- loading and cascade tripping of generators. The low frequency condition is generally accompanied by low voltage unless elaborate arrangements like field forcing, etc. are provided in the generators. This is further aggravated due to the lowering of transient stable limits particularly where long transmission lines are involved. The system is likely to separate out at an undesirable, into two segments with large disproportional in the generation and load demand. Frequent operation of the system at low frequency also results in cumulative damage to the generating units, particularly to the low pressure stage blades of steam turbines and in their ultimate mechanical breakdown. The possibility of inter connection breakdown, limitation of spinning reserves and the dangers of under frequency operation.
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Text Practice - Time 1071 - English

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