Most of the sensors operate on a 5 volt system as regulated by the ecm. So even if the ignition voltage varies, the sensors should still see the same five volts.
I feel that the reason for the voltage drop at WOT is that the same circuit (ECM B) that supplies the ignition voltage to the ecm also supplies votage to the injectors. When you are at WOT, the injectors are running near static, meaning open all the time. therefore, the injectors are pulling much more current through that circuit under this condition. using Ohms law (Voltage = Current x resistance), we can see that when the current goes up due to the static condition of the injectors, any resistance within the circuit shows up as a voltage drop, hence lower ignition voltage at the ECM ignition fed terminals. This is what I believe that Datamaster is reading (ignition voltage at the ECM). So now we look at where the resistance is in the circuit. Well its an ignition voltage, meaning its powered when the switch is turned on, so the current path goes through the ignition switch. It also goes through the harness connector at the firewall twice, supply in and then back out. Also goes through the ecmb fuse, fusebox and the connector at the ecm. All these connections and switches add a resistance to the circuit and since they are in series, the resistances add. Its no wonder why we have such a voltage drop starting at the alternator and going to the ecm. I have been considering trying a relay setup to eliminate some of the inherent resistance of the circuit, but time has not permitted trying it out yet.