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A new mathematical function for optimal sizing and siting of DG system

机译:用于优化DG系统尺寸和选址的新数学函数

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Before introducing distributed power, its impacts on voltage profile, line losses, short circuit impedances, and dependability must be assessed independently. The arranging of the electric system with the proximity of DG requires the meaning of a few elements, for example, the best innovation to be utilized, the number and the limit of the units, the best area, the kind of system connection, and so on. The effect of DG in system working attributes, for example, electric losses, voltage profile, reliability and resolute quality should be fittingly assessed. The issue of DG designation and measuring is of incredible significance. The establishment of DG units at non-ideal spots can bring about an increase in system losses, inferring in an increment in expenses and, subsequently, having an impact inverse to the fancied. Therefore, the utilization of an enhancement technique fit for demonstrating the best answer for a given distribution system can be extremely valuable for the system arranging engineer. The target can be the minimization of the dynamic losses of the feeder or the minimization of the aggregate system supply costs, which incorporates generators operation and losses pay or even the best use of the accessible generation limit.
机译:在引入分布式电源之前,必须独立评估其对电压分布,线路损耗,短路阻抗和可靠性的影响。在DG附近布置电气系统需要一些元素的含义,例如,要利用的最佳创新,单元的数量和限制,最佳区域,系统连接的种类等等。上。 DG对系统工作属性(例如,电损耗,电压曲线,可靠性和坚决质量)的影响应适当评估。 DG的指定和测量问题具有不可思议的意义。在不理想的地点建立DG单位会导致系统损失增加,从而导致费用增加,并进而产生与想象相反的影响。因此,对于系统布置工程师来说,利用适合显示给定配电系统最佳答案的增强技术可能非常有价值。目标可以是将馈线的动态损耗降到最低,或者将系统的总供应成本降到最低,这包括发电机的运行和损耗补偿,甚至是对可利用的发电极限的最佳利用。

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