|
|
The Application of IPM in Center Controller of Micro-grid |
Zhang Zhiwen1, Xi Ziqiang1, Zhou Shiping2, Peng Wenli1 |
1.The School of Electrical & Electronic Engineering, Hubei University of Technology, Wuhan 430068; 2.Electric Power Company of Hubei Provincial, Wuhan 430077 |
|
|
Abstract Distributed generation as an important supplement of the municipal power grid, whichis a new form of renewable energy in the future, micro-grid central controller is a core control devicethat distributed generation and municipal power grid joint to power the load. This paper studies theworks of the micro-grid central controller, and designs the system architecture of the controller. Thecontrol unit of the controller adopt TMS320F28338-DSP chip, the control experiments on the intelligentpower module of the inverter circuit PM75RLA120. Experimental results show that the proposed designscheme can achieve good control of the micro-grid central controller output voltage waveform andcurrent waveform.
|
Received: 26 June 2014
Published: 25 July 2013
|
|
|
|
[1] 于鹏飞, 喻强, 邓辉, 等. IEEE 1588 精确时间同步协议的应用的方案[J].电力系统自动化, 2009, 33(13):99-103. [2] IEEE Std. 1588-2008, “IEEE Standard for a PrecisionClock Synchronization Protocol for NetworkedMeasurement and Control Systems, ” July 2008. [3] 殷志良, 刘万顺, 杨奇逊, 等.基于IEEE 1588 实现变电站过程总线采样值同步新技术[J].电力系统自动化, 2005, 29(13): 60-63. [4] 关松青, 肖昌炎, 夏晓荣.IEEE 1588 协议在工业以太网中的实现[J].计算机工程, 2011, 37(6): 237-238. [5] National Semiconductor Corporation. Nationalsemiconductor Ethernet PHYTER-software developmentguide[K]. USA: 2007. [6] National Semiconductor Corporation. DP83640precision PHYTER-IEEE 1588 precision time protocoltransceiver[K]. USA: 2008. [7] 殷志良.数字化变电站中采样值同步技术研究[J].华东电力, 2008, 36(7): 38-41. [8] 章涵, 冯冬芹, 褚健.网络冗余系统中精确时钟同步方法[J].仪器仪表学报, 2008, 29(8): 1643-1649. [9] 于跃海, 张道农, 胡永辉, 等.电力系统时间同步方案[J].电力系统自动化, 2008, 32(7): 82-86. |
|
|
|