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Development energy management strategy to optimize battery operation in islanding microgrid using zero one integer programming

机译:开发能源管理策略,以零零整数编程优化孤岛微电网中的电池运行

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On solar energy microgrid,during the islanding condition and no solar radiation, at night, it only use the battery as a source of energy. This condition raises another problem of how to manage battery operation of each generation to maintain the continuity of the power distribution to each load so that each generation is still able to distribute power without load shedding due to insufficient of energy supply from the battery or if load shedding is done, it must be done at the most minimum. To solve the aforementioned problem, energy management strategy to manage power sharing between PV generation in PV-microgrid is developed, which will manage the usage of back-up battery operation on each distributed generation in order to maintain the continuity of power distribution or to minimize the amount of load shedding, by using the zero one integer programming. The result of the research shown that implementation of the load shedding optimization mechanism using zero-one integer programming on the aforementioned problem, can increase the PDI (Power Distribution Index) from 86,65% to 95,75% at 5 generation simulation, with power sharing method based on Equal Inverter Output Power Operation Mode. Meanwhile, power sharing method based on Equal Battery Level Operation Mode, the implementation of load shedding optimization increases PDI from 95,86% to 99,20%.
机译:在太阳能微电网上,在孤岛状态且没有太阳辐射,在晚上,它仅使用电池作为能源。这种情况引起了另一个问题,即如何管理每一代的电池操作以保持向每个负载分配功率的连续性,使得每一代仍然能够分配功率而不会由于来自电池的能量供应不足或负载不足而造成负载减少脱落完成后,必须至少进行。为了解决上述问题,开发了一种能源管理策略来管理光伏微电网中光伏发电之间的功率共享,该策略将管理每个分布式发电中备用电池的使用情况,以保持配电的连续性或最小化通过使用零一整数编程来减少负载量。研究结果表明,针对上述问题,使用零一整数编程来实现减载优化机制,可以在5代仿真中将PDI(功率分配指数)从86.65%提高到95.75%。基于均等逆变器输出功率工作模式的功率共享方法。同时,基于平等电池电量操作模式的功率分配方法,实施减载优化,可使PDI从95.86%增加到99.20%。

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