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Sandeep Chennakeshu

Researcher at Research Triangle Park

Publications -  74
Citations -  2797

Sandeep Chennakeshu is an academic researcher from Research Triangle Park. The author has contributed to research in topics: Signal & Time division multiple access. The author has an hindex of 31, co-authored 74 publications receiving 2785 citations. Previous affiliations of Sandeep Chennakeshu include Ericsson & General Electric.

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Patent

Local communication network for power reduction and enhanced reliability in a multiple node tracking system

TL;DR: In this paper, a mobile local area network (LAN) of tracked assess utilizing minimal power and bandwidth allows a large number of assets to be tracked in a practical manner, where each tracked asset has capability to independently determine and report its position to a central station.
Journal ArticleDOI

Cryptographic key agreement for mobile radio

TL;DR: The performance of a particular key distribution system is evaluated for a practical mobile radio communications system and it is shown that by using a channel decoder, the probability of two users establishing a secret key is close to one, while the probabilities of an adversary generating the same key are close to zero.
Patent

Protocol and mechanism for primary and mutter mode communication for asset tracking

TL;DR: In this article, the authors propose the use of the local area network (LAN) or "mutter" mode, in which a subset of tracking units communicate with each other in a mobile LAN.
Patent

Distributed radio telephone for use in a vehicle

TL;DR: A radio-telephone includes a base unit mounted within the vehicle having a wide area transceiver for communicating with a station outside the vehicle, a control unit disposed in the vehicle remotely from the base unit, and a local area network for establishing a communication link between the base units and the control unit as discussed by the authors.
Patent

Automatic simulcast alignment

TL;DR: In this paper, a decision feedback equalizer (DFE) adaptively equalizes the plurality of received RF signals to substantially correct for a misalignment in time between the received signals.