974 resultados para INTERIOR-POINT METHOD
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Market-based transmission expansion planning gives information to investors on where is the most cost efficient place to invest and brings benefits to those who invest in this grid. However, both market issue and power system adequacy problems are system planers’ concern. In this paper, a hybrid probabilistic criterion of Expected Economical Loss (EEL) is proposed as an index to evaluate the systems’ overall expected economical losses during system operation in a competitive market. It stands on both investors’ and planner’s point of view and will further improves the traditional reliability cost. By applying EEL, it is possible for system planners to obtain a clear idea regarding the transmission network’s bottleneck and the amount of losses arises from this weak point. Sequentially, it enables planners to assess the worth of providing reliable services. Also, the EEL will contain valuable information for moneymen to undertake their investment. This index could truly reflect the random behaviors of power systems and uncertainties from electricity market. The performance of the EEL index is enhanced by applying Normalized Coefficient of Probability (NCP), so it can be utilized in large real power systems. A numerical example is carried out on IEEE Reliability Test System (RTS), which will show how the EEL can predict the current system bottleneck under future operational conditions and how to use EEL as one of planning objectives to determine future optimal plans. A well-known simulation method, Monte Carlo simulation, is employed to achieve the probabilistic characteristic of electricity market and Genetic Algorithms (GAs) is used as a multi-objective optimization tool.
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A narrow absorption feature in an atomic or molecular gas (such as iodine or methane) is used as the frequency reference in many stabilized lasers. As part of the stabilization scheme an optical frequency dither is applied to the laser. In optical heterodyne experiments, this dither is transferred to the RF beat signal, reducing the spectral power density and hence the signal to noise ratio over that in the absence of dither. We removed the dither by mixing the raw beat signal with a dithered local oscillator signal. When the dither waveform is matched to that of the reference laser the output signal from the mixer is rendered dither free. Application of this method to a Winters iodine-stabilized helium-neon laser reduced the bandwidth of the beat signal from 6 MHz to 390 kHz, thereby lowering the detection threshold from 5 pW of laser power to 3 pW. In addition, a simple signal detection model is developed which predicts similar threshold reductions.
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Detail view of timber cross-bracing with polycarbonate sheeting behind as seen from upper level dining studio.
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North elevation, deck below and belvedere above, as seen from path to beach.
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View along south elevation, stair to belvedere beyond and bedboxes above.
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View past kitchen windows and roof overhang to entrance deck to the south-west.
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View of ocean and coastal vegetation
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Detail view of timber cross-bracing to dining studio, as seen from upper living area.
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Detail view of timber cross-bracing with polycarbonate sheeting behind as seen from upper level dining studio.
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View along circulation deck to belvedere (deck) beyond.
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View through courtyard to lower studio dining room, as seen from upper living area.
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View through courtyard to lower studio dining room, as seen from upper living area.
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North elevation, deck below and belvedere above, as seen from path to beach.
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View through courtyard to lower studio dining room, as seen from upper living area.
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View of internal cladding to north-east facade as seen from dining studio.