Improved c/n performance of bandwidth limited broadband...

H - Electricity – 04 – B

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H04B 10/00 (2006.01) H04B 10/12 (2006.01) H04B 10/213 (2006.01) H04B 15/00 (2006.01)

Patent

CA 2371123

The bandwidth of a two-way broadband transmission system (Figure 2) is expanded by frequency stacking shared band signals. The up conversion and down conversion systems utilize matched filters (27, 37 in Figure 2), which are directly connected without a combiner, to output the stacked signal in the up conversion system (Figure 3), and without a splitter to separate the stacked signals in the down conversion system (Figure 4). A single base local oscillator signal is used to generate all of the local oscillator signals needed in the system for up/down conversion. In a coax/HFC cable system, the single base local oscillator signal is generates by a redundant local oscillator in the headend and transmitted to all of the service area nodes in the downstream signal. A comb generator (69 in Figure 4) in each node and in the headend (69 in Figure 3) generates the local oscillator signals needed for up/down conversion as harmonics of the base local oscillator signal for system wide frequency stability.

La largeur de bande d'un système de transmission bilatérale à bande large (Figure 2) est étendue par superposition de fréquence de signaux à bande commune. Les systèmes de conversion amont et de conversion aval utilisent des filtres adaptés (27, 37, Figure 2), directement reliés, sans mélangeur, pour produire le signal superposé dans le cas du système de conversion amont (Figure 3), et sans répartiteur pour séparer les signaux superposés dans le système de conversion aval (Figure 4). Un signal d'oscillateur local à base simple est utilisé pour créer tous les signaux d'oscillateurs locaux nécessaires dans le système de conversion amont et aval. Dans un système hybride fibre et coaxial, le signal d'oscillateur local à base simple est créé par un oscillateur local redondant dans la tête de station et transmis à tous les noeuds de zone de desserte dans le signal aval. Un générateur en peigne (69, Figure 4) au niveau de chaque noeud de zone de desserte et de la tête de station (69, Figure 3) crée les signaux d'oscillateurs locaux nécessaires à une conversion amont/aval en tant qu'harmoniques du signal d'oscillateur local de base aux fins de la stabilité du système dans une large plage de fréquence.

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