In a single component system, the equilibrium vapor pressure is the pressure of the pure vapor in equilibrium with the pure liquid at the same temperature. This is sometimes referred to simply as the vapor pressure or the saturation vapor pressure. In the case of a gas mixture involving a non-condensible component such as air, at equilibrium, the partial pressure of the condensible component is equal to its equilibrium vapor pressure at the system temperature. The pressure in the condensate is equal to the partial pressure of non-condensible component plus condensible vapor. The total pressure in the vapor phase is equal to the equilibrium vapor pressure of the condensible component plus the partial pressure of the non-condensible component. So the total pressure is the same for both the gas phase and the liquid phase.
Saturation pressure is the same as equilibrium vapor pressure at the temperature of the system. Saturation temperature is the temperature at which the partial pressure of the vapor in the gas phase (for a mixture) would be equal to the equilibrium vapor pressure. This is also called the dew point, and would represent the temperature at which liquid would start condensing out of the gas phase.
Until I can get some more feedback from you, these are the answers I would give.