Hetesh Sehgal

Hetesh Sehgal

Santa Clara, California, United States
1K followers 500+ connections

About

I am an experienced Product Manager with over three years of proven success in managing…

Activity

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Experience

  • Supermicro Graphic

    Supermicro

    San Jose, California, United States

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    San Mateo County, California, United States

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    San Mateo County, California, United States

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    San Francisco Bay Area

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    Santa Clara

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Education

  • Santa Clara University Graphic

    Santa Clara University

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    Activities and Societies: Mens Rugby (2018-2019)

    Majoring in Computer Science and Engineering

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    Activities and Societies: National Honors Society, Yearbook Club, Varsity Cross Country, Varsity Rugby, Speech and Debate, Bellarmine Historical Society, and the STEM Club

    AP Physics, Adv. Data Structures, AP Computer Science, AP Environmental Science, US History, Calculus

Licenses & Certifications

Volunteer Experience

  • Tutor

    Ace Middle School

    - 3 months

  • Volunteer

    Tijuana Immersion Trip

    - 1 month

    Poverty Alleviation

    Spent three days in Tijuana building houses for the less fortunate.

Publications

  • The Impact of DoS Attacks on Resource-constrained IoT Devices: A Study on the Mirai Attack

    Cornell University

    Mirai is a type of malware that creates a botnet of internet-connected devices, which can later be used to infect other devices or servers. This paper aims to analyze and explain the Mirai code and create a low-cost simulation environment to aid in the dynamic analysis of Mirai. Further, we perform controlled Denial-of-Service attacks while measuring resource consumption on resource-constrained compromised and victim Internet-of-Things (IoT) devices, such as energy consumption, CPU utilization,…

    Mirai is a type of malware that creates a botnet of internet-connected devices, which can later be used to infect other devices or servers. This paper aims to analyze and explain the Mirai code and create a low-cost simulation environment to aid in the dynamic analysis of Mirai. Further, we perform controlled Denial-of-Service attacks while measuring resource consumption on resource-constrained compromised and victim Internet-of-Things (IoT) devices, such as energy consumption, CPU utilization, memory utilization, Ethernet input/output performance, and Secure Digital card usage. The experimental setup shows that when a compromised device sends a User Datagram Protocol (UDP) flood, it consumes 38.44% more energy than its regular usage. In the case of Secure Digital usage, the victim, when flooded with Transmission Control Protocol (TCP) messages, uses 64.6% more storage for reading and 55.45% more for writing. The significant extra resource consumption caused by Mirai attacks on resource-constrained IoT devices can severely threaten such devices' wide adoption and raises great challenges for the security designs in the resource-constrained IoT environment.

    See publication

Courses

  • AP Computer Science

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  • AP English

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  • AP Environmental Science

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  • AP Physics

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  • Advance Data Structures

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  • Advanced Programming

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  • Calculus

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Languages

  • English

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