智能电网的智能电源转换
由于对我们的能源供应的新需求,智能电网正在发展。智能电网开发与国家供应电网中可再生能源(RES)和电动汽车(EV)(EV)(EV)(DG)或分布式能源(DER)的整合密切相关。这种集成对新生成单元提出了挑战的合规要求。这些规格中的大多数受国家监管机构的监管和执行。
在分布式智能电网中,平衡供应和消费是一项复杂的任务。在这里,Danfoss通过认证的智能电源转换解决方案为OEM和系统集成商提供支持,节省了时间,成本和精力测试和认证。
为了实现供应和消费的要求平衡,遵守当地法规和标准是设计智能电网时的主要考虑因素之一。合规要求与安全,EMC和网格代码有关。这些代码,标准和法规管理着整体的设计,建筑,安装,调试和运作,旨在保护公共卫生,安全和福利。
智能电网的最新趋势之一是“缺失链接”的集成:存储。储能使网格能够平稳地容纳不可预测的消费者和能源生产来源。通常,存储以电池或电池储能系统的形式实施。当然,储能系统也应遵守本地合规要求。
智能网格带有储能
具有集成能量存储的智能电网有助于能源供应时间转移,以克服许多可再生能源的间歇性。在发生停电并处理峰值的情况下,它们还提供备份供应,使设计人员能够降低设备以降低评级以应对常规负载,而不是峰值负载。
智能电网启用器
具有集成能量存储的智能电网有助于能源供应时间转移,以克服许多可再生能源的间歇性。
查看在这个动画中如何
储能如何改善电源质量
传统网格:消费者负载在供应网络上创建峰值。
智能电网:电池存储会删除电源网络上的电源峰,因此消费者负载几乎不会引起电网的干扰。这会产生良好的功率质量,理想情况下使我们能够扩展分销基础架构,从而节省成本。
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支持网格代码
新技术出现,分布生成增加了其在能源组合中的份额,安全标准和法规随着时间的流逝和从一个国家 /地区的下一个国家而变化。在设计混合系统时,必须对所有这些因素进行适当评估和合并,因此设计师面临多个挑战和不确定性。
各种本地需求会影响设计,其构建,相关维护等的遵守情况。组件或系统的适用代码,标准和法规基于这些因素:
- 将部署设备/系统的国家/地区
- 具有管辖权(AHJ)身份的权威
- 第三方实体进行活动
- 连接点,POC/PCC
- MV/LV
- 应用或技术
由于需要广泛的技术要求,测试,法律程序,现代法规,标准和法规为新产品和系统的开发增加了许多复杂性和成本。betway88必威手机版每个AHJ都可以开展活动以验证合规性,因此可能需要文档,测试和模拟。狗威体育赛事简化整体系统认证的一种方法是通过个人预认证系统中每个组件的合规性。因此,为了简化设计,测试,调试和维护流程,Danfoss不断更新并根据最新和最重要的标准进行认证。betway88必威手机版
智能电网的电源转换
当将能源存储和各种能源集成到网格中时,Danfoss的智能功率转换解决方案可改善网格性能并降低资本投资要求。OEM和系统集成商可以使用Danfoss参考设计来简化其电源装置的设计和构建,以节省测试和认证的时间,成本和精力。
Danfoss解决方案支持各种能源生成技术和能源储能解决方案:
集装箱电源转换
智能网格本质上是复杂的系统。它们通常是根据当地能源资源在岛屿或远程社区等偏远地区实施的。
在这些环境中,集装箱电源转换解决方案为客户提供了良好的系统集成,设备保护和物流好处。
Danfoss支持系统集成商(SI)在设计具有基于其首选组件优化性能的系统中。我们的目标是通过提供工具和参考设计来使他们的系统设计更容易,以帮助客户获得项目的获胜优势。例如,Danfoss可以提供可配置的3D型号以及我们产品产品中的2D通用布置图。
想要查询更多的信息
请联系您当地的销售办公室以进行参考设计,可配置的型号和图纸
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Maximizes the energy yield in hybrid solutions and helps improve performance by bringing energy support close to the consumption.
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Vacon®NXPDCGuard™提供可靠的DC网格的可靠短路保护,以在DC网格之间进行完全选择性,并在发生故障时确保快速断开连接。
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最大化混合解决方案的能源产量,并通过将能源支持接近消费来帮助提高性能。
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如果(ISSMALLPICTURE){;} else if(isbigcolumns){} 别的 {}Vacon®NXP网格转换器
专为智能电网,能源存储,电源转换和海洋能源管理应用而设计的空气冷却驱动器。
案例故事
An institute in Kamień Śląski, Poland, is pioneering climate neutral energy consumption. Danfoss helps store electricity from the sun. Savings on electricity bill and CO2 emissions are the main drivers.
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澳大利亚:在干旱的内陆澳大利亚,从地下抽出的井水是如此热,需要冷却才能喝。昆士兰州的温顿镇通过将热量从钻水转换为电力,使它成为其优势。地热发电站在井水冷却过程中恢复了能源,然后在Vacon®Drives的帮助下使用它来为当地社区发电。
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波兰的Kamieńąski的一所研究所正在开创气候中性能源消耗。丹福斯(Danfoss)帮助储存阳光的电力。节省电费和公司2排放是主要驱动因素。
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电气化和混合溶液现在正在蓬勃发展。第一批先驱之一是荷兰的储能制造商Alfen B.V.,该公司从早期就使用Danfoss Power转换设备。
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电气化和混合溶液现在正在蓬勃发展。德国储能制造商Quint GmbH是很久以前开发这些解决方案的最早开发这些解决方案的客户之一,在这是能源行业的“热门话题”。
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丹麦:哥本哈根的诺德哈文港口的弹性热供暖厂,每年少量少量2比基于LPG气体的替代方案。
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