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Demand allocation in local RES electricity market among multiple microgrids and multiple utilities through aggregators

机译:通过聚合器在多个微电网和多个公用事业中的当地Res电力市场的需求配置

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The electricity market for Renewable Energy (RE) Sources (RES) has to be transformed into a market that is more competitive and decentralized than the current one, given the failure of subsidy policies, like the Feed-In-Tariff (FIT) policy, and the increase in the number of small producers but also in the number of power utilities. Clearly, each utility must follow regulation rules regarding the proportion of RES units it must have in its energy mix, in order to avoid emission penalties. Following a decentralized market scheme, we address the problem of allocating a total amount of RE demanded by a set of utilities in a local market to individual RES microgrids (MGs) that can cover the demands, considering two supply policies. In the first policy, a RES producer is assumed to be able to split its production into smaller parts so that it can supply multiple utilities, and a simple allocation algorithm is presented. In the second policy, a RES producer, due to market or technical constraints, cannot split its production and share it among utilities. In this case, we provide an algorithm that solves the problem effectively by viewing it as a knapsack problem. If the cost functions of MGs are independent of the utilities to which they sell (e.g., negligible transportation costs), the results show that the non-divisible policy slightly benefits the MGs. However, in a decentralized market, it is natural to assume that the cost functions of the producers depend on the location of the utilities. To account for this, we provide two more allocation algorithms under both examined supply policies. In this case, the non-divisible policy is much more profitable for MGs and, moreover, the entrance of new utilities in the market clearly benefits them over the divisible case.
机译:电力市场可再生能源(RE)源(RES)已被改造成一个市场,更加具有竞争力,比目前的一个分散的,给予补贴政策的失败,像送电,电价(FIT)的政策,并增加小生产者的数量,而且在电力部门的数量。显然,每个实用程序必须遵循有关的RES单位必须在其能源结构中的比重调控细则,以避免排放处罚。继分散市场计划,我们要解决分配RE的总量的问题,在当地市场上个别RES微电网(MGS),可以覆盖的需求要求通过一组实用程序,考虑两种供应政策。在第一个政策,一个RES制片人被认为是能够将其生产分割成更小的部分,以便它可以提供多种实用工具,以及一个简单的分配算法。在第二个策略中,RES制片人,因市场或技术的限制,不能分割其生产和实用程序之间共享。在这种情况下,我们提供了通过查看它作为一个背包问题有效地解决这个问题的算法。如果的MG的成本函数是独立于其所卖的工具(例如,可以忽略不计运输成本),结果表明,不可分的政策稍微有利于MG的。然而,在分散市场,这是很自然的假设,生产者的成本函数依赖于公用事业的位置。为了解决这个问题,我们同时提供检查供应政策下,两个分配算法。在这种情况下,不可分的政策是的MG更有利可图,而且,新的事业,在市场入口显然有利于他们在可分情况。

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