Increasing Grid Transmission Capacity and Power Quality by new Solar Inverter Concept and Inbuilt Data Communication
نویسنده
چکیده
Increasing regenerative power sources installed in low voltage grids tend to cause overvoltage problems due to the reverse power flow direction. Consequently, regenerative sources need to be turned off temporarily or on the long term, the grid infrastrucutre would have to be extended by the utility company. Additionally, the increasing number of grid connected power electronic systems causes a high level of reactive power flow and harmonics in the grid affecting power quality. The concept described in this paper uses reactive power which is generated in the solar power inverters to increase power capability of the grid. By means of additional reactive power consumption, the grid voltage can be decreased to acceptable values and stabilized. Grid extension in many cases can be avoided or, at least it can be delayed. For control of a distributed system of a number of solar inverters installed in a grid segment distributed data collection and central control is required. Data and control parameters are being transmitted over the power lines with inbuilt real time DLC (distribution line carrier) communication. Additionally, the inverters can be remotely controlled to compensate harmonic distortion and to improve phase voltage balance by feeding unsymmetrical currents into the three phases.
منابع مشابه
Increasing Grid Transmission Capacity and Power Quality by a New Solar Inverter Concept in Low Voltage Grids with a High Proportion of Distributed Power Plants
The proportion of renewable energies in power generation has increased according to the political aims in recent years. In low-voltage grids, these are mostly decentralized renewable energy systems such as photovoltaic (PV) that are connected through inverters to the grid. The temporary reversal of the power flow causes overvoltage problems. Consequently, regenerative sources need to be turned ...
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