Transport energy transfer using real-time cost information
An example operation includes one or more of receiving, at a charging station, a first amount of energy from a transport at a first level and at a time and providing, at the charging station, a second amount of energy to the transport at a level less than the first level at another time.
1. A method, comprising:
identifying, via a charging station, that a transport provided a first amount of energy to a different charging station at a first time based on information received from the different charging station, wherein the information comprises an identifier of the transport, a value of the first time, a level of the first amount of energy, and a cost of the first amount of energy;
determining, via the charging station, a second amount of energy to provide to the transport at another time, wherein the second amount of energy is based on the first amount of energy;
identifying, by the charging station, that a current real-time unit cost associated with the second amount of energy is greater than a unit cost associated with the first amount of energy; and
transferring, via the charging station, the second amount of energy to the transport at the another time at the same unit cost as the first amount of energy.
2. The method of claim 1 , further comprising:
providing, via an energy storage of the charging station, the second amount of energy to the transport in response to a current cost of energy from a power grid being greater than a cost of energy associated with the first amount of energy.
3. The method of claim 1 , wherein the cost of the second amount of energy at the another time is less than the cost of the first amount of energy.
4. The method of claim 1 , comprising:
creating, via the charging station, a first blockchain transaction to record the first amount of energy;
creating, via the charging station, a second blockchain transaction to record the second amount of energy; and
validating, by a peer group comprising the transport and charging station, the first blockchain transaction and the second blockchain transaction.
5. The method of claim 4 , comprising:
committing the first blockchain transaction and the second blockchain transaction to a shared ledger.
6. A charging station for a transport, the charging station comprising:
a processor that when executing one or more instructions stored in an associated memory is configured to:
identify a transport provided a first amount of energy to a different charging station at a first time based on information received from the different charging station, wherein the information comprises an identifier of the transport, a value of the first time, a level of the first amount of energy, and a cost of the first amount of energy;
determine a second amount of energy to provide to the transport at another time, wherein the second amount of energy is based on the first amount of energy;
identify that a current real-time unit cost associated with the second amount of energy is greater than a unit cost associated with the first amount of energy; and
transfer the second amount of energy to the transport at the another time at the same unit cost as the first amount of energy.
7. The charging station system of claim 6 , wherein the processor is further configured to:
provide, via an energy storage of the charging station, the second amount of energy to the transport in response to a current cost of energy from a power grid being greater than a cost of energy associated with the first amount of energy.
8. The charging station of claim 6 , wherein the cost of the second amount of energy at the another time is less than the cost of the first amount of energy.
9. The charging station of claim 6 , wherein the processor is further configured to:
create a first blockchain transaction to record the first amount of energy;
create a second blockchain transaction to record the second amount of energy; and
validate the first blockchain transaction and the second blockchain transaction.
10. The charging station of claim 9 , wherein the processor is further configured to:
commit the first blockchain transaction and the second blockchain transaction.
11. A non-transitory computer readable medium comprising one or more instructions that when executed by a processor cause the processor to perform:
identifying, via a charging station, that a transport provided a first amount of energy to a different charging station at a first time based on information received from the different charging station, wherein the information comprises an identifier of the transport, a value of the first time, a level of the first amount of energy, and a cost of the first amount of energy;
determining, via the charging station, a second amount of energy to provide to the transport at another time, wherein the second amount of energy is based on the first amount of energy;
identifying, by the charging station, that a current real-time unit cost associated with the second amount of energy is greater than a unit cost associated with the first amount of energy; and
transferring, via the charging station, the second amount of energy to the transport at the another time at the same unit cost as the first amount of energy.
12. The non-transitory computer readable medium of claim 11 , wherein the one or more instructions further cause the processor to perform:
providing, via an energy storage of the charging station, the second amount of energy to the transport in response to a current cost of energy from a power grid being greater than a cost of energy associated with the first amount of energy.
13. The non-transitory computer readable medium of claim 11 , wherein the cost of the second amount of energy at the another time is less than the cost of the first amount of energy.
14. The non-transitory computer readable medium of claim 11 , wherein the one or more instructions further cause the processor to perform:
creating, via the charging station, a first blockchain transaction to record the first amount of energy;
creating, via the charging station, a second blockchain transaction to record the second amount of energy; and
validating, by a peer group comprising the transport and charging station, the first blockchain transaction and the second blockchain transaction.