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‹en-tête›
‹date/heure= › =
‹pied de page›
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1

=
La Propagation Ionosphérique
pour le DX’er et le Contester=
 
Bordeaux DX Club
1er  Décembre, 2007
Bordeaux, France
par Dominique Auprince, F6EPY
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=
Sommaire
La propagation des ondes est, sans contestation, le phénomène q= ui a porté l’= ;essor des radio-amateurs  en leur permettant de réaliser des liaisons mondiales avec des moyens très modestes &ag= rave; une époque où la technologie le permettait difficilement.
Elle reste encore aujourd’hui leur principal motif d’enthousiasme q= uand les bandes fleurissen= t de DX ou quand un pays rare apparait.
En 2007,  plus que jamais, les logiciels et l’internet constituent des outils formidables pour l’appréhender
•<= /span>Combien de personnes consultent les prévisi= ons de propagation ?
•<= /span> Comb= ien de personnes utilisent-elles un logiciel de prévision pour planifier <= /span>leur trafic, un contest ou une expédition D= X ?
•<= /span> Comb= ien de personnes utilisent-elles les données internet temps réel po= ur affiner la prévision ?
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Agenda =
•<= /span>Objectif de l’exposé
•<= /span>Quelques notions de base
–<= /span>Information et Bruit <= /div>
–<= /span>Détectivité de l’inf= ormation par un opérateur humain: bilan de liaison
–<= /span>Antennes et propagation
•<= /span>Fondamentaux d’un circuit de propagation
–<= /span>Le champ magnétique terrestre = ;
–<= /span>La grayline
–<= /span>La couche F
–<= /span>La couche D
–<= /span>La couche E
–<= /span>Le cas particulier des bandes basses (80= m, 160m)
–<= /span>Les zones polaires
–<= /span>L’anomalie équatoriale =
•<= /span>Cycle solaire, ionosphère et rela= tion soleil-terre
•<= /span>Fin du cycle solaire 23, prévisio= n du cycle solaire 24: où en sommes nous ?
•<= /span>Météo de l’espace: perturbations de la propagation
•<= /span>Les outils fondamentaux sur le PC et le = NET
•<= /span>Petit traité de propagation &agra= ve; l’usage du DX’er
•<= /span>Petit traité de propagation &agra= ve; l’usage du Contester
•<= /span>Ressources utiles
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Objectif de l’Exposé
Donner au DX’er et au Contester les notions de base po= ur réaliser leur propre prévisions de propagation et augmenter leur performanc= e
<= span style=3D'font-size:88%'>Comprendre les perturbation radio
Lister les meilleures ressources actuell= es disponibles gratuitement sur l’int= ernet
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Quelques notions de base:
l’= ;Information et le Bruit
= L’ « information »  (CW, phonie, PSK31…etc), doit pouvoir être détectée. Le « seuil d’intelligibilité », à partir duquel on peu= t extraire l’information est fix&eac= ute; par:
Le niveau du signal disponible
La bande passante utilisée
Le niveau de bruit dans cette bande passante
Deux paramètres essentiels définissent le circuit de propagation:
Le bruit: bruit du récepteur, température équivalente de bruit antenne: bruit naturel (atmosphérique, cosmique), br= uit artificiel (parasites électriques)
L’atténuation subie par le signal (pertes d’antenn= e, pertes du circuit de propagation)
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Quelques notions de base:
D&eacut= e;tectivité par un opérateur humain
•<= /span>Bande passantes:
–<= /span>Phonie (BLU)   2400 Hz (34 dB/Hz)
–<= /span>CW  250 Hz (24 dB/Hz)
•<= /span>Puissance de bruit à 3 Mhz (VOACA= P)
–<= /span>Bruit -145 dBW/Hz (urbain) à -152= dBW/Hz (rural)
–<= /span>Correction selon F avec table ci-contre&= #13;
–<= /span>Pour être intelligible à 21= Mhz en rural, soit 25 dB de bruit en moins qu’à 3 Mhz:
•<= /span>un signal CW à 3 dB de SNR sera d= e -152 -25 + 24 + 3 =3D -150 dBW soit -120 dBm  et un SNR de 27 dB par rapport à une BP de 1 Hz <= /b>
•<= /span>Un signal BLU à 10 dB de SNR sera= de -152 – 25 + 34 + 10 =3D -133 dBW soit -103 dBm et un SNR de 44 dB par rapport  à une BP de 1 Hz
•<= /span>Traitement par le cerveau humain
–<= /span>Traitement équivalent à un filtrage diminuant la bande équivalente de bruit:  1000 Hz  (30 dB/Hz) = pour la phonie et 50 Hz (15 dB/Hz) pour = la CW
–<= /span>Pour être capable de détect= er le signal, on se contentera d’un SNR de 18 dB et 40 dB respectivement
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7
Quelques notions de base:
Antenne= et propagation
•<= /span>C’est l’ionosphère qui contrôle la propagation
•<= /span>Cependant, le rôle du systè= me d’antenne est de maximiser le signal utile et le paramètre le <= /span>plus important est l’angle = d’incidence du signal (dépa= rt ou arrivée)
•= En réception, l’antenne doi= t aussi maximiser le rapport signal sur bruit, quitte à atténuer le signal (cas d’une antenne beverage)
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