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Multi-period planning of distribution grid reinforcements under uncertainty about future penetration of photovoltaic systems

机译:经济渗透渗透下消融电网增强型多时期规划

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The policy transition towards renewable sources of energy generation has triggered a proliferation of small, independent, and decentralized power plants such as solar PV panels owned by households. This presents network operators with challenges regarding the maintenance and expansion of low-voltage distribution grids. We model multi-period planning of grid reinforcement on the basis of three investment strategies: a purely reactive strategy that disregards any information about the future, a proactive strategy that requires only a probability distribution of future distributed generation, and a hypothetical strategy assuming perfect information. Simulations show that 75% of the time the proactive strategy achieves equal or lower total reinforcement cost than the reactive strategy, which can be regarded as the industry standard. On average, it yields about 30% of theoretically possible savings. The results are robust to changing simulation parameters, including PV penetration levels.
机译:对可再生能源的政策过渡已经引发了小型,独立和分散的发电厂的扩散,如家庭所拥有的太阳能光伏电池板。这为网络运营商提供了关于低压分布网格的维护和扩展的挑战。我们在三项投资策略的基础上模拟了网格强化的多时期规划:忽略了关于未来的任何信息的纯粹反应策略,这是一个不需要未来分布式发电的概率分布的主动策略,以及假设完美信息的假设策略。模拟显示,主动策略的75 %的时间达到平等或更低的总增强成本,而不是反应策略,可以被视为行业标准。平均而言,其理论上可能会节省大约30 %。改变模拟参数的结果是强大的,包括光伏渗透水平。

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