
doi: 10.1155/2019/9784252
Dynamic directional modulation (DDM) has already proven to be an efficient technique to achieve physical layer security in wireless communications. System architectures based on vector modulators provide a flexible framework to implement synthesis methods that allow us to obtain increased security and/or independent multichannel transmissions. However, the implementation of DDM with vector modulators requires an accurate calibration (amplitude and phase) of every component in the RF path. In this contribution, we study the sensitivity of the response of a DDM system based on commercial vector modulators showing how to correct the nonideal behavior of all the components thanks to the flexibility provided by the vector modulator.
Wireless communications, Flexible framework, System architectures, TK1-9971, Multi-channel transmission, Modulation systems, HE9713-9715, Vector modulators, Electrical engineering. Electronics. Nuclear engineering, Physical layer security, Synthesis method, Cellular telephone services industry. Wireless telephone industry
Wireless communications, Flexible framework, System architectures, TK1-9971, Multi-channel transmission, Modulation systems, HE9713-9715, Vector modulators, Electrical engineering. Electronics. Nuclear engineering, Physical layer security, Synthesis method, Cellular telephone services industry. Wireless telephone industry
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