ENERGY STORAGE FOR HYBRID MOBILE MICROGRID
An electrical storage system comprising a climate controlled enclosure containing a plurality of battery packs, and an inverter; a coolant system, wherein the coolant system runs through a chiller; and a switchgear, wherein the switchgear has a connector to provide energy to a microgrid.
1 . A electrical storage system comprising:
a climate controlled enclosure containing:
a battery pack;
an inverter;
a coolant system, wherein the coolant system runs through a chiller; and
a switchgear, wherein the switchgear has a connector to provide energy to a microgrid.
2 . The electrical storage system of claim 1 , wherein the coolant system contains cooling fluid.
3 . The electrical storage system of claim 2 , wherein the cooling fluid is liquid glycol.
4 . The electrical storage system of claim 1 , wherein the switchgear is a stackable switchgear.
5 . The electrical storage system of claim 1 , wherein the system is mounted on a mobile trailer.
6 . The electrical storage system of claim 1 , wherein the connector is a TJB connector.
7 . The electrical storage system of claim 1 , wherein there are a plurality of battery packs.
8 . The electrical storage system of claim 7 , wherein there are at least ten battery packs.
9 . The electrical storage system of claim 1 , wherein the battery packs are charged by a renewable energy source.
10 . The electrical storage system of claim 1 , wherein the battery packs are charged by a generator.
11 . The electrical storage system of claim 1 , wherein the battery packs are charged by a utility source.
12 . The electrical storage system of claim 1 , wherein the system is designed to operate autonomously.
13 . An electrical storage system comprising:
a climate controlled enclosure containing:
a plurality of battery packs;
an inverter;
a switchgear comprising a connecter to provide energy to a microgrid; and
a transformer.
14 . The electrical storage system of claim 13 , wherein the system is configured to charge and discharge power directly from the inverter and circumvent the transformer.
15 . The electrical storage system of claim 13 , wherein the system is configured to operate independently of a microgrid.
16 . The electrical storage system of claim 15 , wherein the system is capable of providing voltage support along a distribution line.
17 . The electrical storage system of claim 13 , wherein the system has a shore power connection.
18 . The electrical storage system of claim 13 , wherein the system is configured to charge and offload power simultaneously.
19 . The electrical storage system of claim 13 , further comprising a control system configured to supplement power to the microgrid when certain parameters are met.