MicroGrid: Utilizing and allocating the available resources efficiently

P. Anush, P. Karthigaikumar
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Abstract

Innovations and explorations carried out continuously in power grids resulted with complex interaction with the load and power source. Utilizing the communication backbone that gives the smartness for these networks with effective electric power distribution system is proposed which reduces the power consumption from the transmission main power grid, thus providing a major solution for the energy crisis. In this proposed system two types of network like Home Area Network (HAN) and Neighborhood Area Network (NAN) were employed to provide a stable power flow for minimization of the load shedding. HAN network is established with the help of IEEE 802.15.2 communication protocol for communicating between the electrical appliance to the smart meter and distributed power source like wind energy, solar energy and diesel generator to control center. NAN network is established with the help of IEEE 802.11n communication protocol for communication between smart meter and control center. Control center employs, two way communication between the power grid the local microgrid. The power management control algorithm will manage the power source depending upon the demand of the load. On surplus availability of energy, power is routed back to power grid. The simulation result provides promising improvement for the proposed power management with minimum the communication overhead.
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微电网:有效地利用和分配可用资源
电网不断进行创新和探索,与负荷、电源之间的相互作用十分复杂。提出了利用通信主干网为这些网络提供智能的有效配电系统,减少了输电主网的电力消耗,从而为解决能源危机提供了一个重要的解决方案。在该系统中,采用家庭局域网(HAN)和邻居局域网(NAN)两种类型的网络来提供稳定的潮流,以最大限度地减少负载。采用IEEE 802.15.2通信协议建立HAN网络,用于电器与智能电表之间的通信,以及风能、太阳能、柴油发电机等分布式电源与控制中心之间的通信。采用IEEE 802.11n通信协议建立NAN网络,实现智能电表与控制中心之间的通信。控制中心采用,电网与本地微电网之间双向通信。电源管理控制算法将根据负载的需求对电源进行管理。在剩余的可用能源上,电力被输送回电网。仿真结果表明,所提出的电源管理方法在通信开销最小的情况下具有较好的改进效果。
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