首页> 外文会议>IEEE Global Humanitarian Technology Conference >A universal charge controller for integrating distributed energy resources
【24h】

A universal charge controller for integrating distributed energy resources

机译:用于集成分布式能源资源的通用充电控制器

获取原文

摘要

Centralized electric grids provide power to much of the world's population, yet cost and technical constraints prevent grid extension to 1.2 billion people living without power today. Off-grid and micro-grid power systems are solutions to electrifying remote areas of developing countries. Generally, these systems include a mix of renewables, storage, conventional generation, and demand response or metering, with a wide variety of controllers needed to address the many possible power system configurations and component specifications. Existing low-cost technologies have limited interoperability and flexibility to span the problem space. This paper seeks to address this need and describes the motivation, requirements, specifications, prototyping, and early testing of a Universal Charge Controller (UCC) that integrates with various sources, loads, and storage. The UCC meets load requirements for a household or other small building up to 500W peak load capacity. Power source connections include solar photovoltaics (18-24VDC), battery storage (12-24VDC), an AC micro-grid (110/220VAC), or a DC micro-grid (50-70VDC). This flexibility, combined with intelligent controls, permits the UCC to serve as the keystone in connecting various energy architectures as a community develops over time. The UCC can charge a 12V or 24V Lead Acid or Lithium-Ion battery from one or more sources (current controlled or voltage controlled). Storage charging efficiency is improved with Maximum Power Point Tracking (MPPT) during the conversion of solar power. The accuracy of the design parameters was analyzed by testing different use cases on a commercial development board with results used to refine specifications and schematics of the UCC prototype. Technical specifications and design documentation are in development through an open source partnership with IEEE Smart Village to promote widespread adoption.
机译:集中电网为世界上大部分人口提供了电力,但成本和技术限制防止网格延伸到今天没有电力的12亿人。离电网和微电网电力系统是开发国家偏远地区的解决方案。通常,这些系统包括可再生能源,存储,传统生成和需求响应或计量的混合,并且需要各种控制器来解决许多可能的电力系统配置和组件规格。现有的低成本技术具有有限的互操作性和灵活性来跨越问题空间。本文探讨了这种需求,并描述了与各种来源,负载和存储集成的通用充电控制器(UCC)的动机,要求,规格,原型设计和早期测试。 UCC满足高达500W峰值负载能力的家庭或其他小型建筑的负荷要求。电源连接包括太阳能光伏(18-24VDC),电池存储(12-24VDC),AC微电网(110 / 220VAC)或DC微电网(50-70VDC)。这种灵活性与智能控制相结合,允许UCC作为将各种能源架构连接到社区随着时间的推移时的梯形。 UCC可以从一个或多个源(电流控制或电压控制)充电12V或24V铅酸或锂离子电池。在太阳能转换过程中,存储充电效率提高了最大功率点跟踪(MPPT)。通过在商业开发板上测试不同用例来分析设计参数的准确性,该结果用于改进UCC原型的规格和原理图。技术规范和设计文件正在开发通过与IEEE智能村的开源合作伙伴关系,以促进广泛的采用。

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