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An economic-environmental asset planning in electric distribution networks considering carbon emission trading and demand response

机译:考虑碳排放交易和需求响应的配电网络中的经济环境资产计划

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摘要

Initiatives such as government programs and investment in low-carbon technologies have been adopted to mitigate the carbon emissions in the electricity sector. These initiatives have resulted in new challenges in the power sector, and to address them adequately, innovative frameworks are required in the electric distribution network (EDN) expansion planning and operation problems. Therefore, this work proposes an environmentally committed asset planning approach to remedy the existing issues to some extent. The proposed strategy investigates the benefits of the simultaneous allocation of several assets such as capacitor banks (CBs), distributed generation (DG) units based on renewable energy sources, and energy storage systems (ESSs). Moreover, an innovative carbon emission trading scheme is formulated in the planning stage to mitigate the CO2 emissions while a demand response program is applied to modify the consumption behavior. The proposed approach is formulated as a two-stage robust mixed-integer programming model, which considers uncertainties associated with the electricity demand and renewable-based DG. To cope with the difficulties of this complex model, utilizing an efficient decomposition algorithm, such as the C&CG decomposition algorithm, is essential. The potential of the proposed approach is studied under different operating conditions and via several test cases on a 137-node EDN. In addition, to validate the performance of the proposed carbon emission scheme, a multi-region 54-node distribution network is adequately evaluated. Results show that by considering simultaneously multiple planning alternatives, carbon emission trading scheme, and the demand response program, the total CO2 emissions are reduced by up to 15%.
机译:政府计划和对低碳技术的投资已被采取以减轻电力部门的碳排放。这些举措给电力部门带来了新的挑战,为了充分应对这些挑战,配电网络(EDN)扩展计划和运营问题中需要创新的框架。因此,这项工作提出了一种环境承诺的资产计划方法,以在一定程度上纠正现有问题。拟议的策略研究了同时分配多种资产的好处,例如电容器组(CB),基于可再生能源的分布式发电(DG)单元以及储能系统(ESS)。此外,在计划阶段制定了一种创新的碳排放权交易计划,以减轻CO2排放,同时应用需求响应程序来修改消费行为。拟议的方法被公式化为两阶段鲁棒混合整数规划模型,该模型考虑了与电力需求和基于可再生能源的DG相关的不确定性。为了解决这个复杂模型的困难,必须使用有效的分解算法,例如C&CG分解算法。在不同的操作条件下,并通过在137个节点的EDN上的几个测试案例,研究了该方法的潜力。此外,为验证所提出的碳排放方案的性能,对一个多区域54个节点的分配网络进行了充分评估。结果表明,通过同时考虑多种计划替代方案,碳排放权交易计划和需求响应计划,二氧化碳总排放量最多可减少15%。

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