Methods and apparatuses for allocating amounts of energy

US9577434B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9577434-B2
Application numberUS-201214129107-A
CountryUS
Kind codeB2
Filing dateMay 30, 2012
Priority dateJun 24, 2011
Publication dateFeb 21, 2017
Grant dateFeb 21, 2017

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

The present invention relates to methods and apparatuses for allocating amounts of energy for prosumers, wherein the prosumers provide minimum and maximum amounts of energy for a future interval of time and the respective amounts of energy from the prosumers are generated in such a manner that, on the one hand, a relative position of the amount of energy within an interval for the particular prosumer, as defined by the minimum amount of energy and the maximum amount of energy, assumes an identical value for all prosumers and, on the other hand, a sum of the amounts of energy from all prosumers produces a value of zero. The invention can be used in the distribution of amounts of energy in a power supply system having conventional energy producers and energy consumers as well as in novel participants in the power supply system which can both consume and provide energy, for example an electric vehicle.

First claim

Opening claim text (preview).

The invention claimed is: 1. A method for allocating an amount of energy per prosumer, the method comprising: determining a maximum amount of energy and a minimum amount of energy for each prosumer; generating a maximum total amount of energy, the generating of the maximum total amount of energy comprising summing the maximum amounts of energy for each prosumer; generating a minimum total amount of energy, the generating of the minimum total amount of energy comprising summing the minimum amounts of energy for each prosumer; generating a first amount of energy, the generating of the first amount of energy comprising forming a difference between the maximum total amount of energy and the minimum total amount of energy; generating a respective second amount of energy per prosumer, the generating of the respective second amount of energy per prosumer comprising forming a difference between a respective maximum amount of energy and a respective minimum amount of energy; generating an energy factor per prosumer, the generating of the energy factor per prosumer comprising multiplying the respective second amount of energy by a reciprocal of the first amount of energy; generating a respective amount of energy, the generating of the respective amount of energy comprising adding the respective minimum amount of energy and a product of an absolute value of the minimum total amount of energy and the respective energy factor, such that: a relative position of the respective amount of energy is produced within an interval, defined by the minimum amount of energy and the maximum amount of energy, of the respective prosumer such that the relative positions of each of the prosumers have an identical value; and a sum of the respective amounts of energy for each prosumer yields a value of zero. 2. The method of claim 1 , wherein the allocation of the amounts of energy is respectively carried out for a future time interval. 3. The method of claim 2 , wherein a length of the future time interval is set equidistantly. 4. The method of claim 2 , wherein a length of the future time interval is set such that in the case of an increase in a difference between the maximum total amount of energy and the minimum total amount of energy of a current time interval and a difference between the maximum total amount of energy and the minimum total amount of energy of a time interval earlier than the current time interval, the length of the future time interval is dynamically adapted by a comparison of the length of the current time interval. 5. The method of claim 4 , further comprising: assigning a cost function per prosumer, the respective cost function specifying costs for values of the amounts of energy within the minimum amount of energy and the maximum amount of energy of the respective prosumer; selecting a first agent and a second agent from the prosumers such that the cost function of the first agent has a slope of maximum absolute value, and the cost function of the second agent has a slope of minimum absolute value, the slope of maximum absolute value and the slope of minimum absolute value referring respectively to a slope of the respective cost functions in the amount of energy associated with the agent; and generating new amounts of energy of the first agent and the second agent such that: a differential value between the respective amount of energy and the respective new amount of energy of the first agent becomes identical to a differential value between the respective new amount of energy and the respective amount of energy of the second agent; the new amounts of energy of the first agent and the second agent are respectively selected within the minimum amount of energy associated with the first agent and second agent and the associated maximum amount of energy; and a sum of the respective costs of the new amounts of energy is smaller than a sum of the respective costs of the amounts of energy of the first agent and second agent. 6. The method of claim 5 , wherein the amounts of energy of the prosumers represented by the first agent and the second agent are replaced by the new amounts of energy; and wherein the setting of the length of the future time interval is repeated. 7. A device for allocating an amount of energy per prosumer, the device comprising: a processor configured to: determine a maximum amount of energy and a minimum amount of energy for each prosumer; and generate a maximum total amount of energy, the generation of the maximum total amount of energy comprising a sum of the maximum amounts of energy for each prosumer; generate a minimum total amount of energy, the generation of the minimum total amount of energy comprising a sum of the minimum amounts of energy for each prosumer; generate a first amount of energy, the generation of the first amount of energy comprising formation of a difference between the maximum total amount of energy and the minimum total amount of energy; generate a respective second amount of energy per prosumer, the generation of the respective second amount of energy per prosumer comprising formation of a difference between a respective maximum amount of energy and a respective minimum amount of energy; generate an energy factor per prosumer, the generation of the energy factor per prosumer comprising multiplication of the respective second amount of energy by a reciprocal of the first amount of energy; generate a respective amount of energy, the generation of the respective amount of energy comprising addition of the respective minimum amount of energy and a product of an absolute value of the minimum total amount of energy and the respective energy factor, such that: a relative position of the respective amount of energy for each prosumer is produced within an interval, defined by the minimum amount of energy and the maximum amount of energy, of the respective prosumer that the relative positions of the prosumers have an identical value; and a sum of the amounts of energy yields a value of zero. 8. The method of claim 4 , wherein the length of the future time interval is set such that in the case of the increase in the difference between the maximum total amount of energy and the minimum total amount of energy of the current time interval and the difference between the maximum total amount of energy and the minimum total amount of energy of the time interval earlier than the current time interval, the length of the future time interval is shortened by the comparison of the length of the current time interval. 9. A method for allocating an amount of energy per prosumer, the method comprising: determining a maximum amount of energy and a minimum amount of energy for each prosumer; generating a maximum total amount of energy, the generating of the maximum total amount of energy comprising summing the maximum amounts of energy; generating a minimum total amount of energy, the generating of the minimum total amount of energy comprising summing the minimum amounts of energy; generating an energy ratio, the generating of the energy ratio comprising multiplying the maximum total amount of energy by the reciprocal of the minimum total amount of energy; generating an intermediate value per prosumer, the generating of the intermediate value per prosumer comprising subtracting a product of the energy ratio and the respective minimum amount of energy from the respective maximum amount of energy; and generating the respective amount of energy per prosumer, the generating of the respective amount of energy per prosumer comprising multiplying the respective intermediate value by a reciprocal of a subtraction of the energy ratio from a value of one, such that: a relative position of the respecti

Assignees

Inventors

Classifications

  • G06Q10/06Primary

    Resources, workflows, human or project management; Enterprise or organisation planning; Enterprise or organisation modelling · CPC title

  • Energy or water supply · CPC title

  • H02J4/00Primary

    Circuit arrangements for mains or distribution networks not specified as AC or DC; Circuit arrangements for mains or distribution networks combining AC and DC sections or sub-networks (arrangements using intermediate DC-AC-DC conversion H02J1/002; arrangements using high-voltage DC [HVDC] links H02J3/36) · CPC title

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What does patent US9577434B2 cover?
The present invention relates to methods and apparatuses for allocating amounts of energy for prosumers, wherein the prosumers provide minimum and maximum amounts of energy for a future interval of time and the respective amounts of energy from the prosumers are generated in such a manner that, on the one hand, a relative position of the amount of energy within an interval for the particular pr…
Who is the assignee on this patent?
Glomb Christian, Heuer Jörg, Kuntschke Richard, and 2 more
What technology area does this patent fall under?
Primary CPC classification G06Q10/06. Mapped technology areas include Physics.
When was this patent published?
Publication date Tue Feb 21 2017 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).