Broadband Power-line Communications Systems: Theory & Applications
High capacity links in transmission systems could eliminate the need for fiber optic cables in telecommunication networks. Advances in this field led to the evolution of Broadband Power Line Communication (BPLC). This book covers both the theoretical and practical aspects of BPLC technology.
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The validity of Zimmermann and Dostert model and its improvements
Network transfer functions for coupled
Anatory ATP-EMTP attenuation averaged delay proﬁle BPLC BPSK branch lengths branch line length Branch loads branch terminated bridging routers broadband channel capacity channel for various channel is terminated channel model characteristic impedances code rate coherence bandwidth conductor conﬁguration convolution code delay spread Eb/No in dB Excess Delay Microsecond FDTD ﬁrst four distributed branches Frequency in MHz frequency responses ground return high impedances IEEE IEEE Transactions impulse response line characteristic impedance load impedance low impedances low voltage channel medium voltage channel multipath multipath power delay node noise number of branches pF/m PLC channel power delay proﬁles Power Delivery power line power-line channel power-line communication power-line link power-line network propagation PSD in dBm/Hz received signal Reed–Solomon code reﬂected respectively shown in Fig Simulated multipath Simulation results spread spectrum terminal loads terminated in 50 terminated in characteristic Theethayi Transactions on Power transfer function transmission line transmitted Zimmermann and Dostert