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Enhancing Endurance of Non Volatile Memory in Embedded Systems by Shritharanyaa



Enhancing Endurance of Non Volatile Memory in Embedded Systems by Shritharanyaa

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Enhancing Endurance of Non Volatile Memory in Embedded Systems

Non volatile memory is a crucial component in embedded systems, as it allows for data to be retained even when power is removed. However, one of the major challenges with non volatile memory is its limited endurance, as repeated read and write operations can lead to degradation over time.

In my research, I have focused on developing techniques to enhance the endurance of non volatile memory in embedded systems. By implementing wear leveling algorithms, error correction codes, and intelligent data management strategies, we can significantly prolong the lifespan of non volatile memory and improve the overall reliability of embedded systems.

Through extensive testing and simulation, we have demonstrated that these techniques can effectively mitigate the effects of wear and prolong the lifespan of non volatile memory in embedded systems. This research has important implications for a wide range of applications, from IoT devices to automotive systems, where reliable data storage is essential.

Overall, by enhancing the endurance of non volatile memory in embedded systems, we can improve the performance and reliability of these systems, ultimately leading to more robust and efficient devices in the future.
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