Energy storage management system with distributed wireless sensors
An energy storage system having a multiple different types of energy storage and conversion devices. Each device is equipped with one or more sensors and RFID tags to communicate sensor information wirelessly to a central electronic management system, which is used to control the operation of each device. Each device can have multiple RFID tags and sensor types. Several energy storage and conversion devices can be combined.
1. An energy storage apparatus and system for monitoring parameters of an energy storage system, comprising:
a management system for monitoring the parameters of the energy storage system;
a battery pack connected to said management system, wherein said battery includes a multiplicity of individual battery cells;
a multiplicity of battery radio frequency identification and sensor units wherein an individual battery radio frequency identification and sensor unit is connected to each of said individual battery cells, said radio frequency identification and sensor unit operating to sense the parameters of each individual battery cell and provide radio frequency transmission of said parameters of each individual battery cell to said management system;
a capacitor;
a capacitor radio frequency identification and sensor unit connected to said capacitor, said capacitor radio frequency identification and sensor unit operating to sense the parameters of said capacitor and provide radio frequency transmission of the parameters of said capacitor to said management system;
a fuel cell; and
a fuel cell radio frequency identification and sensor unit connected to said fuel cell, said fuel cell radio frequency identification and sensor unit operating to sense the parameters of said fuel cell and provide radio frequency transmission of the parameters of said fuel cell to said management system;
wherein said management system monitors
said battery radio frequency identification transmissions,
said capacitor radio frequency identification transmissions, and
said fuel cell radio frequency identification transmissions.
2. The energy storage apparatus and system for monitoring parameters of an energy storage system of claim 1 further comprising a fly wheel unit and a fly wheel radio frequency identification and sensor unit connected to said fly wheel unit, said fly wheel radio frequency identification and sensor unit operating to sense parameter of said fly wheel unit and provide radio frequency transmissions of the parameters of said fly wheel unit; wherein said management system further monitors said fly wheel radio frequency identification transmissions.
3. An energy storage apparatus and system for monitoring parameters of an energy storage system, comprising:
a management system for monitoring the parameters of the energy storage system;
a battery pack operatively connected to said management system, wherein said battery pack includes a multiplicity of individual battery cells;
a multiplicity of battery radio frequency identification and sensor units connected to each of said individual battery cells, each said radio frequency identification and sensor unit operating to sense parameters of each individual battery cell and provide radio frequency transmission of said parameters of each individual battery cell;
a fly wheel unit operatively connected to said management system,
a fly wheel radio frequency identification and sensor unit connected to said fly wheel unit, said fly wheel radio frequency identification and sensor unit operating to sense parameters of said fly wheel unit and provide radio frequency transmission of said parameters of said fly wheel unit;
a fuel cell operatively connected to said management system,
a fuel cell radio frequency identification and sensor unit connected to said fuel cell, said fuel cell radio frequency identification and sensor unit operating to sense parameters of said fuel cell and provide radio frequency transmission of said parameters of said fuel cell;
a capacitor operatively connected to said management system, and
a capacitor radio frequency identification and sensor unit connected to said capacitor, said capacitor radio frequency identification and sensor unit operating to sense parameters of said capacitor and provide radio frequency transmission of said parameters of said capacitor;
wherein said management system monitors
said battery radio frequency identification transmissions,
said fly wheel radio frequency identification transmissions,
said fuel cell radio frequency identification transmissions, and
said capacitor radio frequency identification transmissions, and transmits said battery radio frequency identification transmissions, said fly wheel radio frequency identification transmissions, said fuel cell radio frequency identification transmissions, and said capacitor radio frequency identification transmissions to said management system for monitoring parameters of the energy storage system.
4. The energy storage apparatus and system for monitoring parameters of an energy storage system of claim 3 wherein said parameters of each individual battery cell include temperature of each said individual battery cell.
5. The energy storage apparatus and system for monitoring parameters of an energy storage system m of claim 3 wherein said parameters of each individual battery cell include voltage of each said individual battery cell.
6. The energy storage apparatus and system for monitoring parameters of an energy storage system of claim 3 wherein said parameters of each individual battery cell include strain parameters of each said individual battery cell.
7. The energy storage apparatus and system for monitoring parameters of an energy storage system of claim 3 wherein said parameters of each individual battery cell include temperature, voltage, and strain parameters of each said individual battery cell.