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Electricity in the large quantities required to supply electric power systems is produced in generating stations, commonly called power plants. The transmission system carries electric power efficiently and in large amounts from generating stations to consumption areas, such transmission is also used to interconnect adjacent power systems for mutual assistance in case of emergency and to gain for the interconnected power systems the economies possible in regional operation. The transmission system that carries the power from the generating centers to the load centers and the distribution system that feeds the power to nearby homes and industries.
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Scope and Importance:
Electric power is the product of two quantities: current and voltage. These two quantities can vary with respect to time (AC power) or can be kept at constant levels (DC power). Each power supply has one input, which has its own circuit breaker, and which requires a dedicated DC power source. The power supplies connect to the mid plane, which distributes the different output voltages produced by the power supplies to the router components, depending on their voltage requirements.
Transmission lines take many forms in practice and have application in many disciplines. Two particular types of transmission lines for communication that have received considerable attention are the coaxial cable and the strip line.
Components of Power Systems Include
Capacitors and reactors: Capacitors and reactors are switched by circuit breakers, which results in moderately large steps in reactive power
Power electronics: Power electronics are semi-conductor based devices that are able to switch quantities of power ranging from a few hundred watts to several hundred megawatts.
Protective devices: Power systems contain protective devices to prevent injury or damage during failures.
SCADA systems: Supervisory Control and Data Acquisition (SCADA) is used for tasks such as switching on generators, controlling generator output.
Integrated Power Systems: An integrated circuit, commonly referred to as an IC, is a microscopic array of electronic circuits and components that has been diffused or implanted onto the surface of a single crystal, or chip, of semiconducting material such as silicon. It is called an integrated circuit because the components, circuits, and base material are all made together, or integrated, out of a single piece of silicon, as opposed to a discrete circuit in which the components are made separately from different materials and assembled later.
Power Systems supply voltage or current of fixed polarity, either positive or negative. It can be powered from an AC or DC source. A basic DC power system consists of a transformer, a rectifier, a filter, and a regulator. All these components help provide a constant and ripple free DC output. It is used in a wide variety of applications in telecommunication, data centers, and transportation. These systems are also commonly used in various industries such as oil and gas, consumer electronics, and automotive. Technavio's analysts forecast the global DC power system market to grow at a CAGR of 3.6% over the period 2014-2019.
1. Power System Society
2. The Power Engineering Society
3. International Advisory Board on Technology
4. World Scientific and Engineering Academy and Society
5. Fluid Power Society
6. Hubbell Power Systems
7. International Council on Large Electric Systems
8. International Federation of Automatic Control
9.Utility Wind Integration Group (UWIG)
2. Toshiba-San Francisco
3. Husk Power Systems-India
4. Rolls-Royce Power Systems- Germany
6. Hbl Power Systems Limited-India
7.Silver Springs Networks
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This page was last updated on 11th Sep, 2015
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