An Evaluation of Energy Storage Cost and
To define and compare cost and performance parameters of six battery energy storage systems (BESS), four non-BESS storage technologies,
Theinherentphysicalandchemicalpropertiesofbatteriesmakeelectrochemicalenergy storage systems suffer from reduced lifetime and energy loss during charging and dis- charging. These problems cause battery life curtailment and energy loss, which in turn increase the total cost of electrochemical energy storage.
Keywords:Electrochemical energy storage · Life-cycle cost · Lifetime decay · Discharge depth 1 Introduction Electrochemical energy storage is widely used in power systems due to its advantages of high specific energy, good cycle performance and environmental protection.
The operation and maintenance costs of electrochemical energy storage systems are the labor,operationandinspection,andmaintenance coststoensurethattheenergystorage system can be put into normal operation, as well as the replacement costs of battery fluids and wear and tear device, which can be expressed as:
Capital costs for electrochemical storage devices are typically expressed in dollars per kilowatt hour ($ /kWh), while those for flywheels, PSH, CAES, and CTs are expressed in dollars per kilowatt ($ /kW). This paper remains consistent with the literature for these technologies.
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