iPlug:分布式发电的分散调度

Subendhu Rongali, T. Ganu, M. Padmanabhan, V. Arya, S. Kalyanaraman, M. Petra
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引用次数: 10

摘要

随着太阳能光伏技术的进步和电池板成本的降低,太阳能被认为是满足日益增长的能源需求的一种经济和可持续的解决方案,特别是在印度等日照水平高的国家。然而,大规模采用分布式太阳能发电存在关键挑战。首先,人们担心分布式发电会造成电压违规和系统不稳定。其次,为公用事业公司主动控制和调度分布式发电提供可靠的通信基础设施存在挑战。我们通过设计一个分散的控制器iPlug来解决这些挑战,该控制器涉及电压敏感的太阳能容量注入电网的水平,并受到网络文献中的CSMA协议的启发。这是与当地电池和当地需求增加资源等其他资源一起完成的。iPlug功能是对新兴微型逆变器技术的补充,原则上可以纳入逆变器控制或电池和家庭能源管理控制系统。我们提出了基于模拟的iPlug算法评估的初步结果,并将其与静态PV注入策略进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
iPlug: Decentralised dispatch of distributed generation
With advances in solar photovoltaic technology and decreasing costs of panels, solar energy is considered as an economical and sustainable solution for growing energy demands, especially in countries such as India with high insolation levels. However, key challenges exist in large scale adoption of distributed solar generation. Firstly, there are concerns related to breach of voltage regulations and system instabilities caused by distributed generation. Secondly, there are challenges in providing robust communication infrastructure for utilities to actively control and dispatch distributed generation. We address these challenges by designing a decentralised controller iPlug, which involves voltage-sensitive back-off of the level of solar capacity injection into the grid and is inspired by the CSMA protocol from Networking literature. This is done in conjunction with other resources like local batteries and local demand ramp-up resources. iPlug functions are complementary to emerging microinverter technologies and could in principle be incorporated into either the inverter controls or battery and home energy management control systems. We present preliminary results from simulation-based evaluation of iPlug algorithms and compare it with static PV injection strategies.
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