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Dynamic Optimal Power Flow Incorporating Gas Turbine Generator Unit with Compressed Natural Gas Systems

机译:具有压缩天然气系统的动态最优功率流量燃气涡轮发电机单元

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摘要

In developing countries, gas infrastructures are not well established yet. Consequently, insufficient gas supply for gas turbine generator unit may occur during peak load hours. Dual firing unit can overcome such limitation by switching the fuel to High Speed Diesel Oil. However, it will significantly increase the operation cost since High Speed Diesel fuel is much more expensive than natural gas. Recently, a compressed natural gas system has been widely used to solve inadequacy of gas supply during peak load hours. This system compresses the remaining natural gas supply from gas provider during off-peak load hours and stores it into gas tubes. The compressed gas is then released to top up gas supply to gas turbine during peak load hours. Thus, the unit can fully operate on gas at both peak and off-peak load hours. As a result, the operation cost will be lower. This paper proposes an approach in optimizing system operation cost of large system, which has gas turbine generator unit with compressed natural gas system. Furthermore, load curtailment and implementation of take or pay energy contract is also included. The problem is formulated as dynamic optimal power flow and solved using quadratic programming. The proposed approach is tested using IEEE 30 bus and Jawa Bali 500 kV. The results show the effectiveness of the approach in optimizing daily gas usage as well as satisfying take or pay energy contract.
机译:在发展中国家,天然气基础设施尚未得到很好的成熟。因此,在峰值负荷小时内可能发生用于燃气涡轮发电机单元的气体供应不足。双烧制单元可以通过将燃料切换到高速柴油来克服这种限制。然而,由于高速柴油燃料比天然气昂贵,因此它将显着提高运营成本。最近,压缩的天然气系统已被广泛用于解决峰值负荷小时内的供气量不足。该系统在非峰值装载时间内从燃气供应商压缩剩余的天然气供应,并将其存储到气体管中。然后在峰值负载时间内释放压缩气体以使气体供应到燃气轮机。因此,该单元可以在峰值和截止峰值峰值的气体上完全操作气体。结果,运营成本将较低。本文提出了一种优化大型系统的系统运营成本的方法,具有带压缩天然气系统的燃气涡轮发电机单元。此外,还包括负载缩减和执行或支付能源合同的实施。该问题被制定为动态最佳功率流,并使用二次编程解决。使用IEEE 30总线和Jawa Bali 500 kV来测试所提出的方法。结果表明了该方法在优化日常气体使用以及满足采取或支付能源合同方面的有效性。

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