Thinking of self installing a 5kW solution onto a South facing garage. DIY solution appears to be 60% cheaper than hiring a local installer (Ohio)

  • evranch@lemmy.ca
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    2 years ago

    I’m an electrician, I found my own solar panels incredibly easy to install. The job is 90% racking and I would recommend buying a racking package if possible which includes all mounts, rail and fasteners.

    Take care as solar panels are ALWAYS LIVE. This is why they use the shielded connectors that they do. Do all the rest of your wiring first, then plug the panels in last.

    Make sure you have appropriate disconnecting means. If this is going to be grid tied in any way, make sure you’re familiar with the code as it will be inspected. If not grid tied you may be exempt, but this is no reason to just slap it up, still follow the code as it’s there for your safety.

    I recommend grid-interactive systems over grid-tied if you actually want to be power independent. Microinverters seem great until the power goes out and your panels are good for nothing. I would recommend a power blending transverter type system that allows 3-way power flow between panels, battery and grid. They have come way down in price and allow seamless integration of your loads compared to a charger/inverter system like I have.

    Run a string voltage as close as possible to your battery voltage to avoid conversion losses. It’s tempting to go for high string voltages but roof mount distances are usually really short and conversion will likely be most of your loss. I started with 140VDC strings and my charger ran hot, dropping to 70VDC made it run cool and boosted my output by over 10%.

    Depending on your utility it may not be worth selling power and the hassle or extra fees and regulations that come with it. That’s the case here - I just have automation set up to burn excess power for heat in winter and cooling in summer.

    Best of luck with your install, for sure it is way cheaper to DIY and not hard at all.

    • z3rOR0ne@lemmy.ml
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      2 years ago

      Thanks for this extensive reply. Not the OP, but I’ve been slowly doing my research on this, and this gave me a good base of things to look into. Cheers!

      • mosiacmango@lemm.ee
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        2 years ago

        An example of of “grid-interactive” system is the ecoflow smart home panel. It’s the front runner I’m looking at right now for my own system. It will dynamically balance where power is coming from based on your batteries/solar/grid state. Easy to expand battery packs, and ties directly into up to 10 circuits.

    • ikidd@lemmy.ca
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      2 years ago

      What kind of charger are you using that needs to voltage match the batteries? I’m running 500V strings on a Luxpower 18K and it’s not an issue with the chargers in that.

      • evranch@lemmy.ca
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        2 years ago

        Schneider MPPT 150. We sell a lot of Schneider at work and I got a good price on it. However it’s totally a piece of crap. It’s the only “150v” device I’ve ever seen where 150v is the do not exceed voltage rather than the operating voltage, and it will trip offline at 140v which causes a huge issue here in Canada where OCV can rise greatly below -20C.

        Wouldn’t recommend Schneider in general as they require their own proprietary CANBus mod to get telemetry out of any of their equipment.

        • ikidd@lemmy.ca
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          2 years ago

          That’s been my impression of Schneider, great on AC but their solar stuff is a placeholder for “nobody every got fired for buying Schneider”. I thought they ran Modbus on their comms, pretty sure I’ve seen the modbus maps for them around the Homeassistant forums. Maybe it’s just some equipment, but the Conext is modbus afaik.

          I wouldn’t say the “150V” should be operating voltage by default, most SCCs I’ve used put that as the “do not exceed” number, just like the current. I’ve smoked relatively expensive charge controllers by being slightly over either of those numbers. Though Victron seem to be able to take it for a while without cratering.

  • endlessbeard@lemmy.ml
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    2 years ago

    I’m an electrical engineer who designs commercial and Utility Scale PV systems (i.e. Multi acre solar power plants), though I’ve done a couple dozen residential systems as well.

    @evranch@lemmy.ca chimed in with some really good advice, but I wanted to add a few things.

    If I were to do my own system I’d go with micro inverters, enphase IQ8 most likely, as they can be setup to operate during a grid outage, either with a battery backup, or with a load balancing panel.

    Careful of the downfalls of going the DIY route, not sure how it is in your state, but in some states I’ve worked in you will forfeit incentives if you don’t use a qualified installer.

    Get familiar with your utilities net metering policies, if they don’t net meter power at or near retail rates then you’ll end up giving them your power for free/cheap whenever you overgenerate. Some utilities will also make it difficult if you’re not going through a qualified installer.

    Lastly, and this is coming from someone who understands the industry intimately, really take a look at the numbers and decide if this makes sense for you. Most residential solar will take 5-10 years to pay for itself (after incentives) and start to generate a profit. Compare that with the same sum invested in a general s&p500 index fund which would likely have doubled in value during that time.

    Ultimately I decided not to install solar on my home, despite the ability to 100% DIY the whole thing and get parts at steep discounts, and instead installed a backup generator and signed up with a local community solar array (which is not something that all states/utilities allow).

    Happy to answer any questions you may have!

    • MigratingApe@lemmy.world
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      2 years ago

      One guy from Poland posted a video in polish on YT where he calculated that his roof solar in last 10 years of operation provided significantly less RoI than if he simply bought gold at market price 10 years ago and sold it now.

      This is a freaking scam over here. We need power mostly in winter, especially with the push to install more heat pumps. Solar is not working in the winter here, people literally got scammed by government that subsidized solar and heat pumps installations for lower income families on the condition that they remove coal or wood powered heating. Now they can’t afford to run those heat pumps!

    • MrNorm@lemmy.world
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      2 years ago

      Thanks for this reply! I put off the professional install of panels as the ROI was just too far out. Self install did come up as I’m fairly competent but your points still highlight the problems. Sometimes the numbers just don’t work, even if you can do it cheap

  • Chreutz@lemmy.world
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    2 years ago

    I’m not an electrician, but an electrical engineer, and I bought a complete DIY package with everything. Electrical code here in Denmark then only needs a certified electrician to do the connection to the the grid, which includes submitting the system to the grid operator, also so we can be paid for the surplus production.

    If you know how to read the instructions, and plan your work, it’s quite fun, and I’m pretty sure my panels are better secured (likely overkill) and more straight than 80% of the professional installs here, just because we took the time to do it thoroughly.

    If you feel have the ability and you have the time, I would highly recommend it. But as another pointed out, try to find a kit with the mounting hardware!

      • Chreutz@lemmy.world
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        2 years ago

        I don’t think there is anything blocking that from happening, but what scale are you thinking?

        • sixty@sh.itjust.works
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          2 years ago

          Just house-scale. It’s just that with how DK laws can be I wouldn’t be surprised if it would be illlegal

          • Chreutz@lemmy.world
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            2 years ago

            I think I need more details: are you planning on running your house completely off-grid from solar, or Install (a set of) outlets that are powered by solar?