This non-provisional application claims priority under 35 U.S.C. ยง119(a) on Patent Application No(s). 098136867 filed in Taiwan, R.O.C. on Oct. 30, 2010, the entire contents of which are hereby incorporated by reference.
1. Field of Invention
The present invention relates to a network connection manner of a microgrid energy storage backup power source, and a method for dispatching the same, in which a plurality of renewable energy storage systems of microgrids are jointed, and an improved genetic algorithm is used as a method for dispatching energies of the plurality of renewable energy storage systems, for enhancing electric power dispatching efficiency of different microgrids, so as to achieve high quality power supply and optimal economic operation of an electric power system.
2. Related Art
Along with the development of the operation of the electrical industry, the electric power quality in the electric power system is gradually developed towards an intellectualization and power-saving direction. The global energy source is limited, and the discharge capacity of carbon dioxide is strictly limited in the countries all over the world, such that it becomes a trend of the recent electric power system to develop new alternative energy sources, for example, solar energy, wind force, fuel cell, tide, geothermal heat, wave, and other renewable energy sources which may be repeatedly utilized and will not be exhausted. Generally, renewable energy source power plants, including the solar power, the fuel cell, and the wind electrical power generation, are all provided with energy storage systems, so as to provide a stable power supply. In addition to reducing the electric quantity supplied by a remote power source through a transmission line, the energy storage system also reduces the loss of electricity transmission and improves power supply efficiency. The electric power quality of the renewable energy source electric power system is relevant to a continuous supply load time of the system and a performance thereof, which mainly depend on whether the energy stored in a renewable energy resource system (RERS) may be effectively controlled and applied or not to supply the continuous operation of the load and the uninterrupted source of the energy storage, so as to achieve the stable power supply. The renewable energy storage system is usually constructed by combining battery units, and thus is mainly advantageous in gentle charging/discharging voltage, easy acquisition, and high security. Usually, the energy storage device of the RERS analyzes voltage signals returned from the batteries, and appropriately performs the charging and the protection according to different situations, so as to supply a stable direct current (DC) power source, and supply the power to the sensitive load through a stabilizing device, thereby preventing from affecting an accuracy of the apparatus due to the change of the voltage. However, when a continuous long time of sharp change of the voltage of the system is compensated, the energy storage system having a large capacity is required. Particularly, when the voltage of the system drops, the compensation time and the performance mainly depend on whether the stored energy amount in the RERS may be effectively controlled and applied in real time or not to achieve an effect of overall compensation. The present invention also provides a concept of a multi-compensation energy storage system, in which two or more different RERSs are utilized, and DC energy storage parts in the RERSs are connected and controlled, so as to dispatch and compensate the energy. Therefore, the present invention also provides an improved genetic algorithm as a method for dispatching the renewable energy storage systems, so as to dispatch the energy of different RERSs and continuously control the load for a long time, thus achieving an optimal economic operation with a high electric power quality of the electric power system.
The electric transmission structure of the common regional renewable energy source usually only utilizes a single energy storage backup power source device, which cannot fully utilize the advantages of the diversity and the mixed application of the electric power dispatching of the microgrid. If the energy storage backup power source device of the region fails, the region cannot obtain the power supply through the renewable energy source. The present invention provides a new concept of a multi-compensation energy storage system, in which the DC powers of the internal energy storage systems of the renewable energy sources in different regions are connected and controlled, and the energy storage backup power source is dispatched, so as to greatly improve the reliability of the power supply of the microgrid.
The establishment of a conventional alternating current (AC) power transmission has problems such as three-phase unbalance and distributed power source synchronization, and the transformer and the inductive load elements often result in unpredictable surges because of activation or switching of the switch. The advantage of the DC power is that the distributed power sources of the DC power do not have to be synchronized, and the voltage pulsation resulting from the load effect may be compensated through the application of the design of the energy storage device, such that the establishment of the DC microgrid will gradually become the future trend. The present invention also provides a new concept of a multi-compensation renewable energy storage system, in which the DC powers (usually provided by battery units combined together) stored in the plurality of sets of renewable energy source in different regions are partially connected and controlled, so as to form a transmission network of the DC power of the energy storage backup power source, which is advantageous in gentle charging/discharging voltage, easy acquisition, and high security. A systematic dispatching method of different electrical energy storage devices according to the present invention is used together to integrate the electric output, so as to obtain an independent or regional microgrid, such that the electric power from the hybrid renewable energy source may be effectively and fully utilized.
The present invention provides a network connection manner of a microgrid energy storage backup power source, and a method for dispatching the same. Energy storage systems of renewable energy sources of different regions are jointed, so as to form a DC power network of a backup power source for dispatching energies of different renewable energy sources, so as to achieve high electric power quality and optimal economic operation of the electric power system. Usually, the energy storage device of the RERS also analyzes voltage signals returned from the batteries, and appropriately performs the charging and the protection according to different situations, so as to supply a stable DC power source, and supply the power to the sensitive load through a stabilizing device, thereby preventing from affecting an accuracy of the apparatus due to the change of the voltage. However, when a continuous long time of sharp change of the voltage of the system is compensated, the energy storage system having a large capacity is required. Particularly when the voltage of the system drops, the compensation time and the performance mainly depend on whether the stored energy amount in the energy storage system may be effectively controlled and applied in time or not to achieve an effect of overall compensation. The present invention also provides a new concept of a multi-compensation energy source energy storage system, in which energy storage parts in the energy storage systems of different power supply regions are connected and controlled, so as to dispatch and compensate the energy. The present invention also provides an improved genetic algorithm as a method for dispatching the DC power of the renewable energy storage systems, thus achieving the object of optimal economic operation with a high electric power quality of the electric power system.
The present invention is directed to a network connection manner of a microgrid energy storage backup power source, and a method for dispatching the same, in which a plurality of renewable energy storage systems of microgrids are jointed, and an improved genetic algorithm is used as a method for dispatching energies of the plurality of renewable energy storage systems, for enhancing electric power dispatching efficiency of different microgrids, so as to achieve high quality power supply and optimal economic operation of an electric power system.
The present invention will become more fully understood from the detailed description given herein below for illustration only, and thus are not limitative of the present invention, and wherein:
A more comprehensible description of the present invention is given below with reference to the accompanying drawings, the reference numerals, and the detailed description of the present invention, for assisting the examination works of the examiners.
The present invention provides a network connection manner of a microgrid energy storage backup power source, and a method for dispatching the same, which are a connection manner of multi-compensation energy storage, and a method for dispatching the same. Several sets of internal energy storage systems of renewable energy sources are connected, controlled, and dispatched, in which manners of connecting the internal energy storage systems of renewable energy sources are divided into two types.
In the first connection type, the regional renewable energy storage systems are butt-jointed.
In the second connection type, the renewable energy storage systems are connected in a hub management manner.
The present invention provides a method for dispatching network connection of a microgrid energy storage backup power source, which serves as a scheduling control method for long-time multi-compensation energy storage systems.
In Step 31, initial data is randomly generated.
In Step 32, an economic dispatching is performed, so as to encode parameters and calculate adaptive function values.
In Step 33, it is determined whether a termination condition is satisfied.
In Step 34, if the termination condition is satisfied, a parameter solution for optimal energy storage dispatch is output.
In Step 35, if the termination condition is not satisfied, a process is replicated and a crossover rate and a mutation rate are determined through fuzzy rules.
In Step 36, a crossover and a mutation are calculated.
In Step 37, decoding is performed.
In Step 36, the crossover and the mutation are calculated.
In Step 37, the decoding is performed.
In Step 38, a set is solved.
In Step 39, an optimal solution is calculated by using a simulated annealing algorithm or a tabu search algorithm.
In Step 40, the optimal solution is obtained.
In Step 41, a parameter transformation encoding is performed, and Step 32 is performed again until the optimal parameter solution for energy storage dispatch is output.
To sum up, the structural features and the embodiments of the present invention are disclosed in detail, which fully show that the present invention have implementation novelty and inventive step in terms of objectives and efficacies, and have industrial application. Moreover, the present invention have never been seen in the market, and thus the present invention thoroughly conforms to the requirements for an invention patent according to the law. Though the present invention has been disclosed above by the embodiments, they are not intended to limit the present invention. Equivalent variations and modifications made based on the claims of the present invention shall all fall within the protection scope of the present invention. It will be much appreciated if the application is examined and granted a patent.
Number | Date | Country | Kind |
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098136867 | Oct 2009 | TW | national |