Local power flow control

L. M. Chetochnikova, N. I. Smolentsev, N. V. Tomskich, D. A. Gimgina, D. A. Lavrentieva
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Abstract

Show  the  prospects  for  the  development  of  local  electric  networks  with distributed generation. Recent changes in the electric power industry are forcing the revision of the  requirements  for  both  infrastructure  and  power  facilities.  Show  that  the  connection  of distributed generators and consumers of electrical energy to the network is fraught with certain difficulties.  Solving  the  problem  of  high-quality  and  uninterrupted  power  supply  to  consumers requires  a  new  approach  associated  with  the  use  of  modern  Smart  Grid  technologies,  equally related to energy and information technology. It is noted that for the implementation of such a large-scale  task,  the  "road  map"  "Energynet"  of  the  National  Technology  Initiative  was developed,  among  the  main  directions  of  which  are  the  digitalization  of  the  infrastructure  of distribution  networks  and  the  deep  decentralization  of  electricity  production.  Consider,  in accordance  with  the  identified  areas,  the  segments  of  the  smart  energy  market,  which include: reliable  and  flexible  distribution  grids,  smart  distributed  energy  and  consumer  services. Propose  a solution  to  the  problem  using  the  example  of  a  local  low  voltage  microgrid  with distributed  generation.  METHODS.  The  solution  to  the  problem  is  proposed  on  the  basis  of creating  a  simulation  model,  with  the  help of  which  it  is possible  to  perform  a  number  of  tests and obtain the optimal network mode within a given error area. implement various options for the structure of the microgrid, the number and type of generators, the load level. The structural diagram  of  the  local  network  is  proposed.  RESULTS.  The  article  describes  the  process  of managing  power  flows  between  producers  (local  distributed  sources)  and  consumers  of electricity.  This  process  is  carried  out  through  a  single  control  center,  which  receives information  about  the  state  of  the  micro-grid  objects - the  level  of  electricity  generation  by generators  and  the  level of  the  current  load of  consumers.  Based  on  the results  of  information processing  in  the  control  center,  a  decision  is  made  on the  redistribution  of  power  between objects.  A  scheme  describing  the  dynamic  process  of  power  transfer  for  efficient  resource management  in  the  power  distribution  network  is  proposed.  CONCLUSION.  The  considered power management algorithm is a simple implementation of classical load balancing, and at the same time allows for optimal energy distribution within a given error. Optimal, in this case, will be the state of the system, in which all distributed renewable energy sources are used in full to meet the needs of the local micro-network, while reducing to a minimum the consumption from the  network.  At  the  same  time,  it  is  also  necessary  to  introduce  corrections  for  the  unevenness and instability of electricity generation by renewable energy sources.
本地功率流控制
展示利用分布式发电发展本地电网的前景。电力行业的最新变化迫使人们修改对基础设施和电力设施的要求。 说明将分布式发电机和电能消费者连接到电网存在一定困难。 要解决向用户提供高质量和不间断电力供应的问题,就必须采用与使用现代智能电网技术相关的新方法,这些技术同样与能源和信息技术有关。需要指出的是,为了完成这样一项大型任务,已经制定了国家技术倡议 "能源网""路线图",其主要方向包括配电网络基础设施的数字化和电力生产的深度分散化。 根据已确定的领域,考虑智能能源市场的各个环节,其中包括:可靠和灵活的配电网、智能分布式能源和消费者服务。以分布式发电的本地低压微电网为例,提出问题的解决方案。 方法: 问题的解决方案是在创建仿真模型的基础上提出的,在该模型的帮助下,可以在给定的误差区域内进行一系列测试并获得最佳网络模式。提出了本地网络的结构图。 结果。 文章描述了电力生产者(本地分布式电源)和消费者之间的电力流管理过程。 该过程通过单一控制中心进行,该中心接收有关微电网对象状态的信息--发电机发电量和用户当前负荷水平。 根据控制中心的信息处理结果,决定在对象之间重新分配电力。 为实现配电网络中有效的资源管理,提出了一种描述电力传输动态过程的方案。 结论。 所考虑的电力管理算法是经典负载均衡的简单实现,同时允许在给定误差范围内优化能量分配。在这种情况下,最优将是系统的状态,即所有分布式可再生能源都得到充分利用,以满足本地微型网络的需求,同时将网络消耗降至最低。 同时,还有必要对可再生能源发电的不均匀性和不稳定性进行修正。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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