Plants can reduce the velocity of wind and wind erosion and prevent the movement of sand.But it may be extremely difficult to measure directly the aerodynamic characteristics of the airflow near the real vegetation in...Plants can reduce the velocity of wind and wind erosion and prevent the movement of sand.But it may be extremely difficult to measure directly the aerodynamic characteristics of the airflow near the real vegetation in field experiments on account of restriction by many objective factors.Therefore,numerous investigations have been carried out to study the efficiency of windbreaks by conducting wind tunnel experiments on simulated models or using computational fluid dynamics(CFD) simulation instead of field measurements.Plant models are simplified at some level to be used for numerical simulation in existing literatures.It is a little distortion of leaves in details if the tree canopy is regarded as a whole region which can have a certain influence on the CFD simulation.Hence,one modeling approach that combines Visual Basic for applications(VBA) and computer aided design(CAD) technology is proposed to design 3D virtual plant models.The tree models used for numerical simulation of wind flow around trees are more lifelike.In addition,this method can be applied for creating a 3D virtual vegetation library.It is also more convenient to get the diversified biological indicators by digital plants in computer.展开更多
The objective of this work was to develop a dynamic model for describing leaf curves and a the rice leaf (including sub-models for unexpanded leaf blades, expanded leaf blades, and dimensional (3D) dynamic visualiz...The objective of this work was to develop a dynamic model for describing leaf curves and a the rice leaf (including sub-models for unexpanded leaf blades, expanded leaf blades, and dimensional (3D) dynamic visualization of rice leaves by combining relevant models detailed spatial geometry model of leaf sheaths), and to realize three- Based on the experimental data of different cultivars and nitrogen (N) rates, the time-course spatial data of leaf curves on the main stem were collected during the rice development stage, then a dynamic model of the rice leaf curve was developed using quantitative modeling technology. Further, a detailed 3D geometric model of rice leaves was built based on the spatial geometry technique and the non-uniform rational B-spline (NURBS) method. Validating the rice leaf curve model with independent field experiment data showed that the average distances between observed and predicted curves were less than 0.89 and 1.20 cm at the tilling and jointing stages, respectively. The proposed leaf curve model and leaf spatial geometry model together with the relevant previous models were used to simulate the spatial morphology and the color dynamics of a single leaf and of leaves on the rice plant after different growing days by 3D visualization technology. The validation of the leaf curve model and the results of leaf 3D visualization indicated that our leaf curve model and leaf spatial geometry model could efficiently predict the dynamics of rice leaf spatial morphology during leaf development stages. These results provide a technical support for related research on virtual rice.展开更多
含光储充的主动配电网作为一种灵活的新型调节资源,可通过聚合其内部的多类分布式电源组成配网虚拟电厂(distribution-level virtual power plant,DVPP)进而整体参与系统二次调频,具有广阔的发展前景。但实际配电网内部情况复杂,存在储...含光储充的主动配电网作为一种灵活的新型调节资源,可通过聚合其内部的多类分布式电源组成配网虚拟电厂(distribution-level virtual power plant,DVPP)进而整体参与系统二次调频,具有广阔的发展前景。但实际配电网内部情况复杂,存在储能配置有限导致可调容量不足、光伏短时出力难以预测导致控制不精确、功率分配不合理导致内部电压越限的问题,传统虚拟电厂调频策略难以适用。针对上述问题,提出了一种基于随机模型预测控制(stochastic model predictive control,SMPC)的DVPP二次调频策略,通过聚合模型设计、光伏不确定功率的场景树模型搭建、SMPC策略设计的方式实现了分布式电源出力扰动情况下DVPP快速、准确响应自动发电控制(automatic generation control,AGC)指令的目标,并有效降低了功率调节对系统内部电压的影响,为DVPP参与系统二次调频提供了理论基础。展开更多
分布式资源(distributed energy resources,DERs)的随机元素会引起多虚拟电厂(multi-virtual power plant,MVPP)系统内虚拟电厂(virtual power plant,VPP)策略频繁变化。对于某主体,如何感知其他主体策略突然变化时对自身收益的影响趋势...分布式资源(distributed energy resources,DERs)的随机元素会引起多虚拟电厂(multi-virtual power plant,MVPP)系统内虚拟电厂(virtual power plant,VPP)策略频繁变化。对于某主体,如何感知其他主体策略突然变化时对自身收益的影响趋势,并快速调整自身策略,是亟需解决的难点。该文提出基于二阶随机动力学的多虚拟电厂自趋优能量管理策略,旨在提升VPP应对其他主体策略变化时的自治能力。首先,针对DERs异质运行特性,聚焦可调空间构建VPP聚合运行模型;然后,基于随机图描绘VPP策略变化的随机特性;其次,用二阶随机动力学方程(stochastic dynamic equation,SDE)探索VPP收益结构的自发演化信息,修正其他主体策略变化时自身综合收益;再次,将修正收益作为融合软动作-评价(integrated soft actor–critic,ISAC)强化学习算法的奖励搭建多智能体求解框架。最后,设计多算法对比实验,验证了该文策略的自趋优性能。展开更多
随着风电和光伏发电装机规模快速增长,系统出现了发电容量充裕度不足的问题。为确保电力系统中的充足发电容量,需要引入容量市场机制。相比于大型火电机组的长建设周期和高投资成本,分布式可调节资源聚合的虚拟电厂(virtual power plant...随着风电和光伏发电装机规模快速增长,系统出现了发电容量充裕度不足的问题。为确保电力系统中的充足发电容量,需要引入容量市场机制。相比于大型火电机组的长建设周期和高投资成本,分布式可调节资源聚合的虚拟电厂(virtual power plant,VPP)建设周期短、投资小、见效快,是为系统提供发电容量的有效资源。因此,构建了虚拟电厂可信容量(unforced capacity,UCAP)计算方法并提出一种考虑虚拟电厂可信容量的新能源电力系统容量市场出清模型。虚拟电厂可信容量计算模型考虑了其功率、能量以及运行特性。容量市场出清模型在考虑发电侧风电、光伏、传统机组的基础上,增加用电侧虚拟电厂参与市场。容量市场出清模型中考虑了高峰容量需求、基本容量需求、电能需求、谷荷需求、爬坡功率需求等系统约束。最后通过算例分析了虚拟电厂可信容量、市场容量总需求量以及新能源装机容量对市场出清结果的影响,验证了本文虚拟电厂可信容量计算方法以及容量市场出清模型的有效性。展开更多
基金National Natural Science Foundation of China(No.41371445)
文摘Plants can reduce the velocity of wind and wind erosion and prevent the movement of sand.But it may be extremely difficult to measure directly the aerodynamic characteristics of the airflow near the real vegetation in field experiments on account of restriction by many objective factors.Therefore,numerous investigations have been carried out to study the efficiency of windbreaks by conducting wind tunnel experiments on simulated models or using computational fluid dynamics(CFD) simulation instead of field measurements.Plant models are simplified at some level to be used for numerical simulation in existing literatures.It is a little distortion of leaves in details if the tree canopy is regarded as a whole region which can have a certain influence on the CFD simulation.Hence,one modeling approach that combines Visual Basic for applications(VBA) and computer aided design(CAD) technology is proposed to design 3D virtual plant models.The tree models used for numerical simulation of wind flow around trees are more lifelike.In addition,this method can be applied for creating a 3D virtual vegetation library.It is also more convenient to get the diversified biological indicators by digital plants in computer.
基金supported by the National High-Tech R&D Program of China (2013AA100404)the National Natural Science Foundation of China (31201130,61471269,31571566)+3 种基金the Priority Academic Program Development of Jiangsu Higher Education Institutions (PAPD),Chinathe Natural Science Foundation of Shandong Province,China (BS2015DX001)the Science and Technology Development Project of Weifang,China (2016GX019)the Doctoral Foundation of Weifang University,China
文摘The objective of this work was to develop a dynamic model for describing leaf curves and a the rice leaf (including sub-models for unexpanded leaf blades, expanded leaf blades, and dimensional (3D) dynamic visualization of rice leaves by combining relevant models detailed spatial geometry model of leaf sheaths), and to realize three- Based on the experimental data of different cultivars and nitrogen (N) rates, the time-course spatial data of leaf curves on the main stem were collected during the rice development stage, then a dynamic model of the rice leaf curve was developed using quantitative modeling technology. Further, a detailed 3D geometric model of rice leaves was built based on the spatial geometry technique and the non-uniform rational B-spline (NURBS) method. Validating the rice leaf curve model with independent field experiment data showed that the average distances between observed and predicted curves were less than 0.89 and 1.20 cm at the tilling and jointing stages, respectively. The proposed leaf curve model and leaf spatial geometry model together with the relevant previous models were used to simulate the spatial morphology and the color dynamics of a single leaf and of leaves on the rice plant after different growing days by 3D visualization technology. The validation of the leaf curve model and the results of leaf 3D visualization indicated that our leaf curve model and leaf spatial geometry model could efficiently predict the dynamics of rice leaf spatial morphology during leaf development stages. These results provide a technical support for related research on virtual rice.
文摘含光储充的主动配电网作为一种灵活的新型调节资源,可通过聚合其内部的多类分布式电源组成配网虚拟电厂(distribution-level virtual power plant,DVPP)进而整体参与系统二次调频,具有广阔的发展前景。但实际配电网内部情况复杂,存在储能配置有限导致可调容量不足、光伏短时出力难以预测导致控制不精确、功率分配不合理导致内部电压越限的问题,传统虚拟电厂调频策略难以适用。针对上述问题,提出了一种基于随机模型预测控制(stochastic model predictive control,SMPC)的DVPP二次调频策略,通过聚合模型设计、光伏不确定功率的场景树模型搭建、SMPC策略设计的方式实现了分布式电源出力扰动情况下DVPP快速、准确响应自动发电控制(automatic generation control,AGC)指令的目标,并有效降低了功率调节对系统内部电压的影响,为DVPP参与系统二次调频提供了理论基础。
文摘分布式资源(distributed energy resources,DERs)的随机元素会引起多虚拟电厂(multi-virtual power plant,MVPP)系统内虚拟电厂(virtual power plant,VPP)策略频繁变化。对于某主体,如何感知其他主体策略突然变化时对自身收益的影响趋势,并快速调整自身策略,是亟需解决的难点。该文提出基于二阶随机动力学的多虚拟电厂自趋优能量管理策略,旨在提升VPP应对其他主体策略变化时的自治能力。首先,针对DERs异质运行特性,聚焦可调空间构建VPP聚合运行模型;然后,基于随机图描绘VPP策略变化的随机特性;其次,用二阶随机动力学方程(stochastic dynamic equation,SDE)探索VPP收益结构的自发演化信息,修正其他主体策略变化时自身综合收益;再次,将修正收益作为融合软动作-评价(integrated soft actor–critic,ISAC)强化学习算法的奖励搭建多智能体求解框架。最后,设计多算法对比实验,验证了该文策略的自趋优性能。
文摘随着风电和光伏发电装机规模快速增长,系统出现了发电容量充裕度不足的问题。为确保电力系统中的充足发电容量,需要引入容量市场机制。相比于大型火电机组的长建设周期和高投资成本,分布式可调节资源聚合的虚拟电厂(virtual power plant,VPP)建设周期短、投资小、见效快,是为系统提供发电容量的有效资源。因此,构建了虚拟电厂可信容量(unforced capacity,UCAP)计算方法并提出一种考虑虚拟电厂可信容量的新能源电力系统容量市场出清模型。虚拟电厂可信容量计算模型考虑了其功率、能量以及运行特性。容量市场出清模型在考虑发电侧风电、光伏、传统机组的基础上,增加用电侧虚拟电厂参与市场。容量市场出清模型中考虑了高峰容量需求、基本容量需求、电能需求、谷荷需求、爬坡功率需求等系统约束。最后通过算例分析了虚拟电厂可信容量、市场容量总需求量以及新能源装机容量对市场出清结果的影响,验证了本文虚拟电厂可信容量计算方法以及容量市场出清模型的有效性。