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Optimal design of hybrid energy systems incorporating stochastic renewable resources fluctuations

机译:考虑随机可再生资源波动的混合能源系统的优化设计

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摘要

The potential impacts of variability and intermittency in renewable resources on the design of standalone renewables-based energy systems incorporating storage are addressed at the design stage. The framework developed accounts for climate-based variability by considering different stochastically generated renewable input scenarios in the evaluation of system reliability. Operational constraints which control the availability and discharge of storage technologies based on previous storage states and technology start-up times are incorporated into the energy system model to account for the intermittent power output from renewables. A cost-reliability bi-criteria sizing problem is solved for two cases of a remote Canadian mine to demonstrate that intermittency in generation can influence technology choices, system configuration and system operation. Approximations to the non-dominated fronts are generated with NSGA-II, and the operating characteristics of the maximum-reliability designs generated in the cases are investigated. The methodology provides the decision maker with information about a number of operable designs and an understanding of the performance risks associated with the selection of any given design.
机译:在设计阶段就解决了可再生资源的可变性和间歇性对独立的基于可再生能源的储能能源系统设计的潜在影响。通过评估系统可靠性时,通过考虑随机产生的不同可再生输入情景,该框架开发了基于气候的可变性。根据以前的存储状态和技术启动时间来控制存储技术的可用性和放电的操作约束,已纳入能源系统模型中,以考虑可再生能源的间歇性输出功率。解决了加拿大一处偏远矿山的两个案例的成本-可靠性双准则确定问题,以证明发电的间歇性会影响技术选择,系统配置和系统运行。用NSGA-II生成非主导前沿的近似值,并研究在这种情况下生成的最大可靠性设计的运行特性。该方法为决策者提供了有关许多可操作设计的信息,以及对与选择任何给定设计相关的性能风险的了解。

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