I did not expect this to be such a controversial topic... but since it
is... here goes :P

I consider having an AH counting SOC meter absolutely vital on most LFP
projects -- at least on any older equipment.  Voltage is just way too flat
on LFP to make any reasonable decisions based on it, except below 25% SOC
maybe, and above 90% SOC.  But that entire range in between there is very
difficult to tell where you are based on voltage.  And most of the older
LFP had no display for SOC (or at best a couple segment bar graph), and no
way to do comms to them for many of them either.  So to allow the customer
to actually know what their batteries are doing, and make decisions on
operation, they need to know SOC -- especially at middle levels where
decisions can still be made (other than it's full, or it's empty, start the
generator asap).

Even on lead acid batteries, I would almost always do an AH counting SOC
meter rather than relying on voltage, as it was just too complicated for
about 75% of customers to grasp voltage -- that's it's non-linear, 0 volts
is no 0% charged, and that it changes at the same SOC depending on whether
you are charging or discharging.

I've used the FNDC, Victron Smartshunts, and Trimetrics on LFP batteries.
And even a Schneider conext battery monitor thing once or twice.  For the
most part, I've been quite happy with how they've functioned.

Thats not to say that there aren't a number of issues with AH counting SOC
meters, whether on lead acid or lithium batteries, and there are some cases
where they just don't work.

With lead acid, the biggest issue was usually declining battery capacity
over time lead to the SOC being unreasonably high compared to reality.  So
it worked great to begin with, but 4 or 5 years later, it would start
kicking the generator on (or shutting down) at much higher indicated SOC
than it used to.

For lithium, SOC drift can definitely be a problem.  I do tell people they
need to get the SOC to 100% once every two weeks minimum, in the winter, to
prevent this -- 1% accuracy error per day doesn't sound bad... till you go
a full month without recalibrating....

Many BMS's built into the batteries experience the same issues with SOC
drift too. Most internal BMS's are blind to currents less than 1 amp or so,
so people who are very good at conserving electricity, reducing their loads
to less than an amp per battery for large portions of the day or at night,
seem to have bigger issues with SOC drift than heavy users.

The new heated batteries are a big problem with AH counting, and can cause
the SOC meter to be completely wrong and useless at times.  I have not
figured out a way around that yet (other than not using heated batteries in
cold climates... they have many other drawbacks IMO, compared to a separate
heating system that's not internal).

SOC meters that reset to 100% if they lose power, rather than retaining
SOC, can also be a problem if you ever trigger the emergency protection on
the lithium battery.  Battery shuts off from low state of charge then SOC
meter resets to 100%, then customer is super confused.  The Victron shunts
are the only ones I've found that can be programmed to keep the same SOC
over a power outage.  Batteries that disconnect just the charging FET due
to cold temperatures, can also cause a unintended reset, by making it
appear the battery rises to absorb voltage with very low amperage while
charging, when really it's just the charge FET is off.

For any new systems, I am coming around to using closed loop batteries of
the same manufacturer as the AIO inverter, and everything is just built
in... the BMS reports to the inverter, everything is based on the BMS
control, and the same monitor shows SOC along with everything else.  My
first attemps at closed loop control were disasters, and I stayed away from
that for several years, but recently I've been much happier with it and the
level of control it gives you.   So that's a different case, and eventually
that'll be all the systems out there.  But for now... there's a lot of
legacy systems still out there, and first gen lithium batteries on legacy
equipment -- no SOC display on batteries and no comms.  So, that's where I
still believe that AH counting SOC meters are critical for system
operation, as long as the customers know the potential trip-ups and don't
view the SOC meter as gospel.

Zeke
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