Here's why I am planning for a dual battery system:
~Modern vehicles use the battery to "smooth" out voltage irregularities and create a more stable voltage that is highly critical to sensors, modules, and other sensitive components in an OBDII CAN vehicle. As such, I want high voltage/amperage drawing equipment on a separate circuit that cannot accidentally cause damaging voltage spikes in the vehicle's critical systems.
~Running a second battery allows me not to have to worry if I accidentally drain the battery too low to start the vehicle.
~A second battery allows me to create a closed circuit (aside from charging voltage from the alternator) for all high amperage components (the on-board air compressor I am looking at draws a peak 80amps when running) and maintain a relatively simple wiring layout without having to worry about tying into the factory fuses and such (I'm a big "make it look factory" kind of mindset)
~I can use a second deep cycle battery to provide an engine off battery source without worrying about killing my car (I would recommend this be done in conjunction with a high-output alternator and to not drop the battery voltage critically as Alternators are not meant to charge a completely drained battery)
~A second battery can be used to jump start the primary battery and/or be switched to use as the primary battery
~A second battery can be used with a pair of strong jumper cables as a sacrificial power source for stick welding serious damage on the trail (not really intended, but if you ever need it its there, some Heep guys and serious expedition guys have told me stories of how that's helped them in the past)
In my case I need it for Reliability, Voltage/Amperage Control and Isolation, and Redundancy
In some cases, some people have a need for a potential 2000CCA system (I know 24V systems on commercial trucks tend to have a couple batteries for just one actual vehicle) and you really can't buy a 2000CCA battery I think?