首页> 外文会议>ASME power conference >AUTO-MAPPING OF TACTICAL GRID TOPOLOGY THROUGH THE USE OF A POWER BEACON
【24h】

AUTO-MAPPING OF TACTICAL GRID TOPOLOGY THROUGH THE USE OF A POWER BEACON

机译:通过使用电力信标自动映射战术网格拓扑

获取原文

摘要

The world of intelligent microgrids and smart grids is rapidly evolving, with new technologies frequently emerging. Integrating "smart" controls into tactical or mobile grids is critical for remote locations that may not have access to utility power. This paper describes research on a process by which a power network topology can be automatically mapped, allowing the control system to identify which equipment is powered by a specific generator. Called the power beacon, this technology is designed to be used in cases where electric subgrids can be joined or split to accommodate power sharing for tactical or emergency power grids. The power beacon operates by issuing a brief current that can be measured at the generation source. Each load in the power grid is retrofitted with the simple and inexpensive circuitry to create this signal. If the grid configuration changes, an iterative process is used so that the location of each load with respect to its power source can be automatically and rapidly determined. Research and development of the power beacon evaluated various methods for generating the current pulses. Initial testing of the concept included shaping of the pulse to reduce noise, as well as testing open and closed loop pulse generation with and without feedback. The development also addressed pulse frequency to help mitigate the negative effect the load inductance will have on power beacon operations. The design process and results from initial testing acted as a proof of concept. Based on the initial results of system testing, modifications were made to handle electrical "noise" coming from the sample power distribution system. The new design integrated a digital filter for noise rejection and increased the current pulse amplitude. These adjustments were tested and indicated significant improvement. The updated power beacon has been installed in a demonstration power distribution system to continue evaluation of viability.
机译:智能微电网和智能电网的世界正在迅速发展,新技术不断涌现。对于无法接入市电的偏远地区,将“智能”控件集成到战术或移动网格中至关重要。本文介绍了对可自动映射电源拓扑的过程的研究,该过程允许控制系统识别由特定发电机供电的设备。这种技术称为电力信标,旨在用于可合并或拆分电力子电网以适应战术或紧急电网的电力共享的情况。功率信标通过发出可在发电源处测量的短暂电流来进行操作。电网中的每个负载都经过简单且廉价的电路改造,以产生此信号。如果电网配置发生变化,则将使用迭代过程,以便可以自动快速地确定每个负载相对于其电源的位置。功率信标的研究和开发评估了产生电流脉冲的各种方法。对该概念的初始测试包括对脉冲进行整形以减少噪声,以及在有反馈和无反馈的情况下测试开环和闭环脉冲的产生。该开发还解决了脉冲频率,以帮助减轻负载电感将对功率信标操作产生的负面影响。初始测试的设计过程和结果可作为概念证明。根据系统测试的初步结果,进行了修改,以处理来自样本配电系统的电气“噪声”。新设计集成了数字滤波器以抑制噪声并增加电流脉冲幅度。对这些调整进行了测试,并表明有明显改善。已将更新的电源信标安装在演示配电系统中,以继续评估可行性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号