小区微晶片配合剂的现场试验

C. Warmer, M. Hommelberg, B. Roossien, J. Kok, J. Turkstra
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引用次数: 51

摘要

在荷兰,通过家庭多热电联产装置的分散式供热和电力预计将在未来几年内高速进入市场。利用信息通信技术,这些多热电联产装置可以集成到智能电力系统或虚拟发电厂中。其他当地的电力生产和消费,如光伏、风能、热泵和电动汽车,可以加入到这个集群中。智能电力系统的主要目标是根据整个能源价值链优化分散电力生产和消费的价值。PowerMatcher是一种基于多智能体的控制概念(和软件包),用于在分布式发电占比高的电网中协调供需。该概念在几个实际的现场测试中得到了验证。其中一项现场试验是一个由10个mu-CHP机组组成的虚拟电厂,以降低mu-CHP机组所连接的普通低压电网段的本地峰值需求。通过这种方式,VPP支持本地配电网运营商(DNO)推迟对电网基础设施(变压器和电缆)的加固。为了实现这一VPP,一个包含硬件和软件基础设施的信息通信技术通信网络已被添加到荷兰的mu-CHP安装测试中。现场试验的主要结论是,根据夏季或冬季,峰值可减少30 -50%。
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A field test using agents for coordination of residential micro-chp
In the Netherlands decentralised generation of heat and power by mu-CHP units in households is expected to penetrate the market at high speed in the coming years. Using ICT these mu-CHP units can be integrated into a smart power system or virtual power plant. Other local production and consumption of electricity such as PV, wind, heat pumps and electrical vehicles can be added to this cluster. The main goal of a smart power system is to optimize the value of decentralised power production and consumption in view of the total energy value chain. The PowerMatcher is a multi-agent based control concept (and software package) for coordination of demand and supply in electricity networks with a high share of distributed generation. The concept is demonstrated in several real life field tests. One of these field tests is a virtual power plant consisting of 10 mu-CHP units reducing the local peak demand of the common low-voltage grid segment the mu-CHP units are connected to. In this way the VPP supports the local distribution network operator (DNO) to defer reinforcements in the grid infrastructure (transformers and cables). To realize this VPP, an ICT-communication network containing a hardware and software infrastructure has been added to a test rollout of mu-CHP installations in The Netherlands. Main conclusion from the field test is that a peak reduction of 30 -50% can be achieved, depending on summer or winter season.
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